├── README.rst ├── planet-filter-rough.py ├── lunar-filter-rough.py ├── planet-filter.py ├── lunar-filter.py ├── LICENSE └── swiftbatcoords.tsv /README.rst: -------------------------------------------------------------------------------- 1 | =========================================== 2 | Lunar & Planetary Occultation Calculator 3 | =========================================== 4 | 5 | Tests when a background target (e.g. a galaxy or star) could be occulted by the moon or a planet. 6 | 7 | Introduction 8 | ----------------------- 9 | 10 | In astronomy, lunar occultations can be useful because timing can be more accurate than imaging resolution. 11 | 12 | Occultations block some part of the target object and allow one to study the remainder. 13 | 14 | For example, occultations of a star by Pluto can be used to measure the surface of Pluto. 15 | Or, occultations of a distant galaxy by the moon can be used to measure the size of the nucleus of the galaxy. 16 | 17 | I wanted to see if NuSTAR AGN observations can take advantage of an occultation. 18 | 19 | Method 20 | ------------- 21 | Provided a target list, lunar-filter-rough.py and planet-filter-rough.py produce 22 | candidate event files. 23 | 24 | lunar-filter.py and planet-filter.py check if these candidates can be viable. 25 | 26 | 27 | Results 28 | -------------- 29 | 30 | At least until 2020, no Swift/BAT AGN will be occulted by the moon or a planet. 31 | 32 | 33 | 34 | 35 | 36 | -------------------------------------------------------------------------------- /planet-filter-rough.py: -------------------------------------------------------------------------------- 1 | """ 2 | Rough filter for lunar occultations with a target list. 3 | 4 | Johannes Buchner (C) 2017 5 | """ 6 | 7 | 8 | import sys 9 | import numpy 10 | import astropy 11 | import astropy.coordinates 12 | import astropy.units as u 13 | 14 | # get a list of nearby AGN 15 | started = False 16 | ras = [] 17 | decs = [] 18 | names = [] 19 | for line in open('swiftbatcoords.tsv'): 20 | if line.startswith('----'): 21 | started = True 22 | continue 23 | if not started: continue 24 | parts = line.split('\t') 25 | ras.append(float(parts[0])) 26 | decs.append(float(parts[1])) 27 | names.append(parts[3]) 28 | 29 | targets = astropy.coordinates.SkyCoord(ras, decs, frame=astropy.coordinates.FK5, unit=u.deg, equinox='J2000') 30 | 31 | # observer: 32 | lon = astropy.coordinates.Longitude(107 * u.deg) 33 | lat = astropy.coordinates.Latitude(34 * u.deg) 34 | height = 2124. * u.m 35 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 36 | 37 | starttime = astropy.time.Time.now() 38 | test_radius = 1. * u.deg 39 | timestep = 30. * u.hour 40 | 41 | candidates = set() 42 | candidates_file = open('candidates_planets', 'w') 43 | 44 | for i in range(100000): 45 | time = starttime + i*timestep 46 | bodies = ['venus', 'mars', 'jupiter', 'saturn', 'uranus', 'neptune'] 47 | for body in bodies: 48 | planet = astropy.coordinates.get_body(body=body, time=time, location=loc) 49 | separation = planet.separation(targets) 50 | sys.stderr.write('%d ... %s %.3f arcmin \r' % (i, time, separation.min().arcmin)) 51 | # now we are covering something 52 | occulted = separation < test_radius # roughly, to get candidate list 53 | if not occulted.any(): 54 | continue 55 | 56 | for i in numpy.where(occulted)[0]: 57 | if i not in candidates: 58 | candidates.add(i) 59 | candidates_file.write('%.10f\t%.10f\t%.1f\t%s\n' % (ras[i], decs[i], time.jd, body)) 60 | candidates_file.flush() 61 | print 'new candidate found:', i, names[i], separation[i], time, body 62 | 63 | 64 | 65 | -------------------------------------------------------------------------------- /lunar-filter-rough.py: -------------------------------------------------------------------------------- 1 | """ 2 | Rough filter for lunar occultations with a target list. 3 | 4 | Johannes Buchner (C) 2017 5 | """ 6 | 7 | 8 | import sys 9 | import numpy 10 | import astropy 11 | import astropy.coordinates 12 | import astropy.units as u 13 | 14 | # get a list of nearby AGN 15 | started = False 16 | ras = [] 17 | decs = [] 18 | names = [] 19 | for line in open('swiftbatcoords.tsv'): 20 | if line.startswith('----'): 21 | started = True 22 | continue 23 | if not started: continue 24 | parts = line.split('\t') 25 | ras.append(float(parts[0])) 26 | decs.append(float(parts[1])) 27 | names.append(parts[3]) 28 | 29 | targets = astropy.coordinates.SkyCoord(ras, decs, frame=astropy.coordinates.FK5, unit=u.deg, equinox='J2000') 30 | 31 | # observer: 32 | # TODO: vary 33 | lon = astropy.coordinates.Longitude(107 * u.deg) 34 | lat = astropy.coordinates.Latitude(34 * u.deg) 35 | height = 2124. * u.m 36 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 37 | 38 | starttime = astropy.time.Time.now() 39 | 40 | # make a time step such that the moon advances a fraction of its angular diameter 41 | fraction = 1./2. 42 | moon_radius = 31. * u.arcmin / 2. 43 | test_radius = 10 * moon_radius 44 | moon_speed = (27. * 24 * u.hour) / (360 * u.deg) # very approximately 45 | moon_step = (moon_speed * test_radius.to(u.deg)).to(u.second) 46 | step = astropy.time.TimeDelta(moon_step * fraction, format='sec') 47 | print 'time step:', step 48 | candidates = set() 49 | candidates_file = open('candidates', 'w') 50 | 51 | for i in range(100000): 52 | time = starttime + i*step 53 | moon = astropy.coordinates.get_moon(time, location=loc) 54 | separation = moon.separation(targets) 55 | sys.stderr.write('%d ... %s %.3f arcmin \r' % (i, time, separation.min().arcmin)) 56 | # now we are covering something 57 | occulted = separation < test_radius # roughly, to get candidate list 58 | if not occulted.any(): 59 | continue 60 | 61 | for i in numpy.where(occulted)[0]: 62 | if i not in candidates: 63 | candidates.add(i) 64 | candidates_file.write('%.10f\t%.10f\t%.1f\n' % (ras[i], decs[i], time.jd)) 65 | candidates_file.flush() 66 | print 'new candidate found:', i, names[i], moon.separation(targets)[i], time 67 | 68 | 69 | 70 | -------------------------------------------------------------------------------- /planet-filter.py: -------------------------------------------------------------------------------- 1 | """ 2 | Detailed filter for lunar occultations from a candidate list. 3 | 4 | For each candidate, it does the following: 5 | 6 | - search for the closest angular separation (between target and moon center). 7 | - from there, search for the entrance and exit of the occultation. 8 | - measure how long a target circle of 1'' remains partially occulted 9 | 10 | The latter quantity tells you whether the occultation is more head-on or grazing. 11 | A grazing lunar occultation is better because the occultation is slower. 12 | 13 | You need to run lunar-filter-rough.py first. 14 | 15 | Johannes Buchner (C) 2017 16 | """ 17 | 18 | import sys 19 | import numpy 20 | import matplotlib.pyplot as plt 21 | import astropy 22 | import astropy.coordinates 23 | import astropy.units as u 24 | import scipy.optimize 25 | import joblib 26 | 27 | mem = joblib.Memory('.', verbose=False) 28 | 29 | lon_deg = 107. 30 | lat_deg = 34. 31 | height = 2000. * u.m 32 | lon = astropy.coordinates.Longitude(lon_deg * u.deg) 33 | lat = astropy.coordinates.Latitude(lat_deg * u.deg) 34 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 35 | 36 | @mem.cache 37 | def compute_body_separation(time, target, body): 38 | planet = astropy.coordinates.get_body(body=body, time=time, location=loc) 39 | return planet.separation(target) 40 | 41 | # get a list of nearby AGN 42 | started = False 43 | step = astropy.time.TimeDelta(u.hour * 100000, format='sec') 44 | 45 | for targeti, line in enumerate(open('candidates_planets')): 46 | ra, dec, approxtime, body = line.strip().split('\t') 47 | ra, dec, approxtime = float(ra), float(dec), float(approxtime) 48 | target = astropy.coordinates.SkyCoord(ra, dec, unit=u.deg, frame=astropy.coordinates.FK5, equinox='J2000') 49 | 50 | if body in ('saturn', 'mars'): 51 | test_radius = 30 * u.arcsec 52 | elif body in ('uranus', 'neptune'): 53 | test_radius = 5 * u.arcsec 54 | elif body in ('venus', 'jupiter'): 55 | test_radius = 60 * u.arcsec 56 | else: 57 | assert False, (body, 'angular size unknown') 58 | starttime = astropy.time.Time(approxtime, format='jd').utc 59 | 60 | def minfunc((i,)): 61 | time = starttime + i*step 62 | separation = compute_body_separation(time, target, body) 63 | return separation.arcsec 64 | 65 | iopt, = scipy.optimize.fmin_cobyla(minfunc, [0.], [], disp=0) 66 | time = starttime + iopt*step 67 | separation = compute_body_separation(time, target, body) 68 | print 'closest to %s: %.3f arcsec [need %s]' % (body, separation.arcsec, test_radius), time 69 | if separation > test_radius: 70 | print ' --> skipping.' 71 | continue 72 | 73 | 74 | -------------------------------------------------------------------------------- /lunar-filter.py: -------------------------------------------------------------------------------- 1 | """ 2 | Detailed filter for lunar occultations from a candidate list. 3 | 4 | For each candidate, it does the following: 5 | 6 | - search for the closest angular separation (between target and moon center). 7 | - from there, search for the entrance and exit of the occultation. 8 | - measure how long a target circle of 1'' remains partially occulted 9 | 10 | The latter quantity tells you whether the occultation is more head-on or grazing. 11 | A grazing lunar occultation is better because the occultation is slower. 12 | 13 | You need to run lunar-filter-rough.py first. 14 | 15 | Johannes Buchner (C) 2017 16 | """ 17 | 18 | import sys 19 | import numpy 20 | import matplotlib.pyplot as plt 21 | import astropy 22 | import astropy.coordinates 23 | import astropy.units as u 24 | import scipy.optimize 25 | import joblib 26 | 27 | mem = joblib.Memory('.', verbose=False) 28 | 29 | @mem.cache 30 | def compute_moon_separation(lon_deg, lat_deg, height, time, target): 31 | lon = astropy.coordinates.Longitude(lon_deg * u.deg) 32 | lat = astropy.coordinates.Latitude(lat_deg * u.deg) 33 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 34 | 35 | moon = astropy.coordinates.get_moon(time, location=loc) 36 | return moon.separation(target) 37 | 38 | # get a list of nearby AGN 39 | started = False 40 | ras, decs, approxtimes = numpy.loadtxt('candidates', ndmin=2).transpose() 41 | # make a time step such that the moon advances a fraction of its angular diameter 42 | fraction = 1./10. 43 | moon_radius = 31. * u.arcmin / 2. 44 | test_radius = 1 * moon_radius 45 | moon_speed = (27. * 24 * u.hour) / (360 * u.deg) # very approximately 46 | moon_step = (moon_speed * test_radius.to(u.deg)).to(u.second) 47 | step = astropy.time.TimeDelta(moon_step * fraction, format='sec') 48 | print 'time step:', step 49 | print 'moon speed:', 1/(moon_speed.to(u.second / u.arcsec)) 50 | 51 | for targeti, (ra, dec, approxtime) in enumerate(zip(ras, decs, approxtimes)): 52 | target = astropy.coordinates.SkyCoord(ra, dec, unit=u.deg, frame=astropy.coordinates.FK5, equinox='J2000') 53 | 54 | starttime = astropy.time.Time(approxtime, format='jd') 55 | 56 | height = 2000. * u.m 57 | def minfunc((i, lon_deg, lat_deg)): 58 | # observer: 59 | if not 0 < lon_deg < 360: 60 | return 1e10 61 | if not -90 < lat_deg < 90: 62 | return 1e10 63 | #lon = astropy.coordinates.Longitude(lon_deg * u.deg) 64 | #lat = astropy.coordinates.Latitude(lat_deg * u.deg) 65 | #loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 66 | 67 | time = starttime + i*step*10000 68 | separation = compute_moon_separation(lon_deg, lat_deg, height, time, target) 69 | #moon = astropy.coordinates.get_moon(time, location=loc) 70 | #separation = moon.separation(target) 71 | #print 'separation: %.2f' % separation.arcmin, i, lon_deg, lat_deg 72 | return separation.arcmin 73 | iopt, lon_deg, lat_deg = scipy.optimize.fmin_cobyla(minfunc, [0., 107., 34.], [], disp=0) 74 | lon = astropy.coordinates.Longitude(lon_deg * u.deg) 75 | lat = astropy.coordinates.Latitude(lat_deg * u.deg) 76 | time = starttime + iopt*step*10000 77 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 78 | moon = astropy.coordinates.get_moon(time, location=loc) 79 | separation = moon.separation(target) 80 | print 'best separation: %.3f arcmin' % separation.arcmin, time 81 | if separation > moon_radius: 82 | print ' --> useless, not occulted. skipping.' 83 | continue 84 | 85 | #continue 86 | 87 | # now the question is: if we have a disk of size moon_radius 88 | # and a target disk of size 1 arcsec 89 | # how long is the target disk partially occulted 90 | # here we should also optimize the location 91 | 92 | # we are looking for a time where the distance between moon center and target is almost the moon radius 93 | # this should happen both before and after the current best time, which is where moon center ~= target 94 | # we want to compute the moon angular velocity, i.e. by what fraction the occultation 95 | # of the target disk changed. This should be minimized. 96 | 97 | for sign in -1, +1: 98 | 99 | def minfunc((i, lon_deg, lat_deg)): 100 | # observer: 101 | if i * sign > 0: 102 | return 1e20 + sign * 1e20 103 | if not 0 < lon_deg < 360: 104 | return 1e20 105 | if not -90 < lat_deg < 90: 106 | return 1e20 107 | #lon = astropy.coordinates.Longitude(lon_deg * u.deg) 108 | #lat = astropy.coordinates.Latitude(lat_deg * u.deg) 109 | #loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 110 | 111 | time = starttime + (i+iopt)*step*10000 112 | #moon = astropy.coordinates.get_moon(time, location=loc) 113 | #separation = moon.separation(target) 114 | separation = compute_moon_separation(lon_deg, lat_deg, height, time, target) 115 | # now compute the separation between target disk and moon 116 | dist_beyond_moon = separation - moon_radius 117 | # coverage is zero if |dist_beyond_moon| < 1arcsec 118 | quality = 1e10 + 1e10 * (dist_beyond_moon.arcsec)**2 119 | if numpy.abs(dist_beyond_moon.arcsec) > 1.: 120 | print '%.2f free range: %.2f arcsec (should be <1arcsec)' % (quality, dist_beyond_moon.arcsec), i, lon_deg, lat_deg 121 | return quality 122 | 123 | # now we are partially occulted by the moon. 124 | # technique: 125 | # advance 1000s and measure new separation. We want this to be slow. 126 | time_later = time + 1000 * u.second 127 | #moon_later = astropy.coordinates.get_moon(time_later, location=loc) 128 | #separation_later = moon_later.separation(target) 129 | separation_later = compute_moon_separation(lon_deg, lat_deg, height, time_later, target) 130 | dist_beyond_moon_later = separation_later - moon_radius 131 | # we want to minimize the difference in moon separation 132 | quality = (dist_beyond_moon.arcmin)**2 + (dist_beyond_moon - dist_beyond_moon_later).arcmin**2 133 | print '%.2f free range: %.2f .. %.2f arcsec' % (quality, dist_beyond_moon.arcsec, dist_beyond_moon_later.arcsec), i, lon_deg, lat_deg 134 | return quality 135 | 136 | iopt2, lon_deg2, lat_deg2 = scipy.optimize.fmin(minfunc, [0, lon_deg, lat_deg]) 137 | 138 | lon = astropy.coordinates.Longitude(lon_deg2 * u.deg) 139 | lat = astropy.coordinates.Latitude(lat_deg2 * u.deg) 140 | loc = astropy.coordinates.EarthLocation(lat=lat, lon=lon, height=height) 141 | 142 | time = starttime + (iopt2+iopt)*step*10000 143 | 144 | print 'computing moon grid ...' 145 | #times = time + numpy.linspace(-1000, 1000, 1000) * u.second 146 | #separation = [compute_moon_separation(lon_deg, lat_deg, height, time_later, target) for time_later in times] 147 | times = [] 148 | separations = [] 149 | for i in range(0, 1000, 10): 150 | time_later = time + i * u.second 151 | separation1 = compute_moon_separation(lon_deg, lat_deg, height, time_later, target) 152 | times.append(i) 153 | separations.append(separation1.arcsec) 154 | time_later = time - i * u.second 155 | separation2 = compute_moon_separation(lon_deg, lat_deg, height, time_later, target) 156 | times.insert(0, -i) 157 | separations.insert(0, separation2.arcsec) 158 | print i, (separation1 - moon_radius).arcsec, (separation2 - moon_radius).arcsec 159 | if numpy.abs((separation1 - moon_radius).arcsec) > 10 and numpy.abs((separation2 - moon_radius).arcsec) > 10: 160 | break 161 | 162 | x = time + numpy.array(times) * u.second 163 | dt = numpy.array(times) 164 | y = numpy.array(separations) * u.arcsec - moon_radius 165 | print 'storing solutions ...' 166 | filename = 'occultation_%d%s' % (targeti, 'p' if sign > 0 else 'm') 167 | numpy.savetxt(filename + '.txt', numpy.transpose([x.jd, separations])) 168 | print 'plotting ...', moon_radius 169 | plt.plot(dt, y.value, color='k') 170 | plt.plot(dt, (dt / moon_speed.to(u.second / u.arcsec)).value, ':', color='gray') 171 | plt.ylim(y.value.min(), y.value.max()) 172 | plt.savefig(filename + '.pdf', bbox_inches='tight') 173 | plt.close() 174 | 175 | 176 | -------------------------------------------------------------------------------- /LICENSE: -------------------------------------------------------------------------------- 1 | GNU AFFERO GENERAL PUBLIC LICENSE 2 | Version 3, 19 November 2007 3 | 4 | Copyright (C) 2007 Free Software Foundation, Inc. 5 | Everyone is permitted to copy and distribute verbatim copies 6 | of this license document, but changing it is not allowed. 7 | 8 | Preamble 9 | 10 | The GNU Affero General Public License is a free, copyleft license for 11 | software and other kinds of works, specifically designed to ensure 12 | cooperation with the community in the case of network server software. 13 | 14 | The licenses for most software and other practical works are designed 15 | to take away your freedom to share and change the works. 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Such new versions 565 | will be similar in spirit to the present version, but may differ in detail to 566 | address new problems or concerns. 567 | 568 | Each version is given a distinguishing version number. If the 569 | Program specifies that a certain numbered version of the GNU Affero General 570 | Public License "or any later version" applies to it, you have the 571 | option of following the terms and conditions either of that numbered 572 | version or of any later version published by the Free Software 573 | Foundation. 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Interpretation of Sections 15 and 16. 611 | 612 | If the disclaimer of warranty and limitation of liability provided 613 | above cannot be given local legal effect according to their terms, 614 | reviewing courts shall apply local law that most closely approximates 615 | an absolute waiver of all civil liability in connection with the 616 | Program, unless a warranty or assumption of liability accompanies a 617 | copy of the Program in return for a fee. 618 | 619 | END OF TERMS AND CONDITIONS 620 | 621 | How to Apply These Terms to Your New Programs 622 | 623 | If you develop a new program, and you want it to be of the greatest 624 | possible use to the public, the best way to achieve this is to make it 625 | free software which everyone can redistribute and change under these terms. 626 | 627 | To do so, attach the following notices to the program. It is safest 628 | to attach them to the start of each source file to most effectively 629 | state the exclusion of warranty; and each file should have at least 630 | the "copyright" line and a pointer to where the full notice is found. 631 | 632 | 633 | Copyright (C) 634 | 635 | This program is free software: you can redistribute it and/or modify 636 | it under the terms of the GNU Affero General Public License as published by 637 | the Free Software Foundation, either version 3 of the License, or 638 | (at your option) any later version. 639 | 640 | This program is distributed in the hope that it will be useful, 641 | but WITHOUT ANY WARRANTY; without even the implied warranty of 642 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the 643 | GNU Affero General Public License for more details. 644 | 645 | You should have received a copy of the GNU Affero General Public License 646 | along with this program. If not, see . 647 | 648 | Also add information on how to contact you by electronic and paper mail. 649 | 650 | If your software can interact with users remotely through a computer 651 | network, you should also make sure that it provides a way for users to 652 | get its source. For example, if your program is a web application, its 653 | interface could display a "Source" link that leads users to an archive 654 | of the code. There are many ways you could offer source, and different 655 | solutions will be better for different programs; see section 13 for the 656 | specific requirements. 657 | 658 | You should also get your employer (if you work as a programmer) or school, 659 | if any, to sign a "copyright disclaimer" for the program, if necessary. 660 | For more information on this, and how to apply and follow the GNU AGPL, see 661 | . 662 | -------------------------------------------------------------------------------- /swiftbatcoords.tsv: -------------------------------------------------------------------------------- 1 | # 2 | # VizieR Astronomical Server vizier.u-strasbg.fr 3 | # Date: 2017-11-13T17:19:19 [V1.99+ (14-Oct-2013)] 4 | # In case of problem, please report to: cds-question@unistra.fr 5 | # 6 | # 7 | #Coosys J2000: eq_FK5 J2000 8 | #INFO votable-version=1.99+ (14-Oct-2013) 9 | #INFO -ref=VIZ5a09d332b64d 10 | #INFO -out.max=unlimited 11 | #INFO queryParameters=14 12 | #-oc.form=dec 13 | #-out.max=unlimited 14 | #-out.add=_RAJ,_DEJ 15 | #-nav=cat:J/ApJ/835/74&tab:{J/ApJ/835/74/table1}&key:source=J/ApJ/835/74&HTTPPRM:& 16 | #-c.eq=J2000 17 | #-c.r= 2 18 | #-c.u=arcmin 19 | #-c.geom=r 20 | #-source=J/ApJ/835/74/table1 21 | #-order=I 22 | #-out=Seq 23 | #-out=Name 24 | #-out=z 25 | #NED=NED 26 | # 27 | 28 | #RESOURCE=yCat_18350074 29 | #Name: J/ApJ/835/74 30 | #Title: IR photometry of AGNs in Swift/BAT 70 month cat. (Ichikawa+, 2017) 31 | #Table J_ApJ_835_74_table1: 32 | #Name: J/ApJ/835/74/table1 33 | #Title: IR and 14-195keV X-ray properties of the Swift/BAT 70-month AGN catalog 34 | #Column _RAJ2000 (F8.4) Right ascension (FK5, Equinox=J2000.0) (computed by VizieR, not part of the original data) [ucd=pos.eq.ra] 35 | #Column _DEJ2000 (F8.4) Declination (FK5, Equinox=J2000.0) (computed by VizieR, not part of the original data) [ucd=pos.eq.dec] 36 | #Column Seq (I4) Sequence No. of the Swift/BAT 70 month catalog [ucd=meta.id;meta.main] 37 | #Column Name (a24) Object name [ucd=meta.id] 38 | #Column z (F11.5) [0.001/0.7]? Redshift [ucd=src.redshift] 39 | _RAJ2000 _DEJ2000 Seq Name z 40 | deg deg 41 | -------- -------- ---- ------------------------ ----------- 42 | 000.3260 -77.0010 2 Fairall 1203 0.05840 43 | 000.6640 +03.3320 3 NGC 7811 0.02550 44 | 001.5800 +20.1780 6 Mrk 335 0.02580 45 | 002.3160 -00.5750 7 2MASX J00091156-0036551 0.07330 46 | 005.3050 -19.1510 10 2MASX J00210753-1910056 0.09560 47 | 006.7010 -53.1530 14 2MASX J00264073-5309479 0.06290 48 | 007.3080 +13.3180 16 [HB89] 0026+129 0.14200 49 | 007.6670 -59.0650 17 ESO112-6 0.02900 50 | 008.6260 -79.0600 19 2MASX J00341665-7905204 0.07400 51 | 008.6330 -04.4070 20 2MASX J00343284-0424117 0.21300 52 | 009.0820 +45.6350 22 CGCG 535-012 0.04760 53 | 009.6470 +23.5990 24 Mrk 344 0.02490 54 | 010.7090 -23.5510 28 NGC 235A 0.02220 55 | 010.7460 +30.2590 29 2MASX J00430184+3017195 0.05100 56 | 010.7460 +30.2590 30 2MASX J00423991+3017515 0.14080 57 | 010.7500 -11.5690 31 MCG -02-02-095 0.01890 58 | 011.5440 -40.0940 32 ESP 39607 0.20130 59 | 012.8990 +29.4710 34 MCG +05-03-013 0.03600 60 | 012.9650 +17.4250 36 Mrk 1148 0.06400 61 | 013.7190 +25.4030 39 [HB89] 0052+251 0.15500 62 | 014.9900 +31.8140 43 Mrk 352 0.01490 63 | 015.1930 -47.8780 44 ESO 195-IG 021 NED03 0.04830 64 | 015.3620 -03.1500 45 2MASX J01012440-0308399 0.06940 65 | 016.3690 -42.1670 49 MCG -07-03-007 0.03020 66 | 016.4290 -47.0500 50 ESO 243- G 026 0.01930 67 | 016.4310 -14.2370 51 2MASX J01053882-1416133 0.06600 68 | 016.4430 -34.5710 52 HE 0103-3447 0.05700 69 | 016.6890 +06.6680 53 2MASX J01064523+0638015 0.04100 70 | 016.9430 -11.6220 55 2MASX J01073963-1139117 0.04750 71 | 017.1850 +13.3600 57 3C 033 0.05970 72 | 017.8530 -38.1270 58 NGC 424 0.01180 73 | 018.4570 +13.2390 60 Mrk 975 0.04960 74 | 018.4870 -14.8350 61 Mrk 1152 0.05270 75 | 018.5630 -32.6330 62 IC 1657 0.01200 76 | 018.5750 -55.4010 63 NGC 454E 0.01210 77 | 020.5070 -28.2920 69 [HB89] 0119-286 0.11600 78 | 020.6120 +50.0890 70 MCG +08-03-018 0.02040 79 | 020.9440 -35.0710 72 NGC 526A 0.01910 80 | 020.9470 -58.7850 73 Fairall 9 0.04700 81 | 021.1100 +33.7750 74 NGC 513 0.01950 82 | 021.4730 +35.1710 75 1RXS J012556.6+351039 0.31200 83 | 021.4890 +15.2750 76 RHS 10 0.11100 84 | 021.8770 +19.1730 77 Mrk 359 0.01740 85 | 022.0010 -18.8260 78 MCG -03-04-072 0.04600 86 | 022.0980 +16.5020 79 CGCG 459-058 0.03860 87 | 022.1920 -60.6530 80 2MASX J01290761-6038423 0.20300 88 | 022.4300 -42.3240 81 ESO 244-IG 030 0.02560 89 | 022.5390 -45.8430 82 2MASX J01302127-4601448 0.11150 90 | 022.9800 -33.0710 83 ESO 353- G 009 0.01650 91 | 023.4810 -36.5040 84 NGC 612 0.03050 92 | 023.6970 -04.5200 85 2MASX J01344565-0430134 0.07900 93 | 024.6590 -39.9910 87 ESO 297-018 0.02520 94 | 024.6770 +29.4400 88 2MASX J01392400+2924067 0.07590 95 | 025.1610 -53.3440 89 2MASX J01402676-5319389 0.07440 96 | 027.2910 +21.8580 93 NGC 678 0.00950 97 | 027.3840 -50.3390 94 2MASX J01492228-5015073 0.03031 98 | 027.8880 -36.1960 95 ESO 354- G 004 0.03350 99 | 028.2110 -03.4150 96 MCG -01-05-047 0.01720 100 | 028.6520 -27.1410 97 2MASSi J0154403-270701 0.15100 101 | 028.8410 +02.4860 98 1ES 0152+022 0.08200 102 | 029.2600 +47.2720 99 2MASX J01571097+4715588 0.04836 103 | 030.1220 +24.4760 101 UGC 01479 0.01640 104 | 030.2620 -06.8060 102 NGC 788 0.01360 105 | 030.7540 -24.0330 105 1RXS J020301.2-240213 0.17810 106 | 031.5540 -00.2790 106 Mrk 1018 0.04240 107 | 031.7540 +29.5090 107 3C 59 0.10960 108 | 031.9800 +44.8220 110 MCG +07-05-016 0.02170 109 | 032.1470 -17.6170 111 NVSS J020834-173933 0.12900 110 | 032.7310 -49.7280 114 ESO 197- G 027 0.04810 111 | 033.6570 -00.7770 116 Mrk 590 0.02640 112 | 033.7260 -64.5090 117 2MASX J02143730-6430052 0.07400 113 | 033.9030 -13.0110 118 3C 062 0.14700 114 | 035.5930 +25.1550 122 2MASX J02223523+2508143 0.06203 115 | 035.8310 +45.8090 123 V Zw 232 NOTES02 0.06200 116 | 036.2110 -23.2220 124 PKS 0222-23 0.23220 117 | 036.3280 -63.2120 126 Fairall 296 0.05800 118 | 036.5900 -28.3290 127 AM 0224-283 0.05980 119 | 036.7450 +23.7730 128 MCG +04-06-043 0.03330 120 | 037.0780 +31.3160 129 NGC 931 0.01670 121 | 037.5460 -08.9980 130 Mrk 1044 0.01650 122 | 037.9150 -36.6660 131 IC 1816 0.01700 123 | 038.5980 +32.4980 133 NGC 973 0.01620 124 | 038.6440 -08.7740 134 NGC 985 0.04300 125 | 038.8500 -29.5980 135 ESO 416-G002 0.05920 126 | 039.5760 -52.2250 136 ESO 198-024 0.04550 127 | 039.6230 -61.3170 137 2MASX J02384313-6117227 0.05400 128 | 039.7530 -40.6580 138 2MASX J02384897-4038377 0.06180 129 | 040.3930 +07.1880 141 Mrk 595 0.02700 130 | 040.5010 +05.2750 142 2MASX J02420381+0510061 0.06900 131 | 040.5750 +05.5090 143 2MASX J02421465+0530361 0.06900 132 | 040.6630 -00.0200 144 NGC 1068 0.00380 133 | 041.1410 -24.5030 146 ESO 479- G 031 0.02350 134 | 042.2730 +26.4730 149 2MASX J02485937+2630391 0.05790 135 | 042.6050 +46.7720 150 2MASX J02502722+4647295 0.02146 136 | 042.6770 +41.7080 152 NGC 1106 0.01450 137 | 042.9280 -16.6330 153 NGC 1125 0.01100 138 | 043.0530 +43.2100 155 FGC 0351 0.05180 139 | 043.1090 -08.5160 156 MCG -02-08-014 0.01680 140 | 043.7920 -00.1660 157 NGC 1142 0.02890 141 | 044.0910 -32.1580 159 ESO 417- G 006 0.01630 142 | 045.0010 -10.8060 162 MCG -02-08-038 0.03260 143 | 045.9380 -01.1360 163 NGC 1194 0.01360 144 | 046.9890 -72.8430 164 ESO 031- G 008 0.02760 145 | 047.0120 -22.9690 165 NGC 1229 0.03600 146 | 047.7770 +32.7100 166 2MASX J03104435+3239296 0.12700 147 | 047.8300 -20.7490 167 RX J0311.3-2046 0.06700 148 | 049.2790 +01.2500 171 MCG +00-09-042 0.02380 149 | 051.2520 -41.8640 175 LCRS B032315.2-420449 0.05800 150 | 051.4750 -56.5640 178 2MASX J03252346-5635443 0.06020 151 | 052.1670 -28.7180 179 PKS 0326-288 0.10800 152 | 052.7240 +05.6550 180 2MASX J03305218+0538253 0.04600 153 | 052.8500 -05.1610 182 MCG -01-09-045 0.01280 154 | 053.3240 +37.3280 183 2MASX J03331873+3718107 0.05580 155 | 053.4050 -36.1490 184 NGC 1365 0.00550 156 | 053.6000 -15.2500 185 2MASX J03342453-1513402 0.03490 157 | 053.8150 +19.1310 187 2MASX J03352254+1907282 0.18900 158 | 055.5130 -21.2270 189 ESO 548-G081 0.01450 159 | 056.2930 -39.5960 190 LCRS B034324.7-394349 0.04310 160 | 056.7930 -30.4480 191 HE 0345-3033 0.09500 161 | 057.5850 -50.3020 193 ESO201-4 0.03590 162 | 057.9310 -40.4980 194 Fairall 1116 0.05860 163 | 058.4500 +37.2010 196 2MASX J03534246+3714077 0.01830 164 | 058.5010 +02.8260 197 2MASX J03540948+0249307 0.03600 165 | 059.0860 -62.8900 199 2MASX J03561995-6251391 0.10760 166 | 059.2030 -40.7040 200 2MASX J03565655-4041453 0.07470 167 | 059.8070 -30.2290 202 SARS 059.33488-30.34397 0.09730 168 | 059.8070 -30.2290 203 SARS 059.28692-30.44439 0.09390 169 | 060.6090 -18.0870 205 ESO 549- G 049 0.02630 170 | 061.3340 -37.1170 207 ESO 359- G 019 0.05520 171 | 061.8240 +03.7420 209 3C 105 0.08900 172 | 063.4460 +11.2070 212 3C 109 0.30560 173 | 063.7100 -07.9280 213 IRAS 04124-0803 0.03790 174 | 064.9730 -54.9460 216 NGC 1566 0.00500 175 | 065.6220 -56.2020 217 ESO 157- G 023 0.04350 176 | 065.8910 +04.1410 218 2MASX J04234080+0408017 0.04500 177 | 066.5100 -57.2190 220 1H 0419-577 0.10400 178 | 066.8100 -11.9910 221 MCG -02-12-017 0.03250 179 | 067.0680 -67.0910 223 2MASX J04294735-6703205 0.06500 180 | 068.3510 -58.7320 227 2MASX J04332716-5843346 0.10230 181 | 069.0690 -10.3620 228 Mrk 618 0.03550 182 | 069.3380 -47.2090 229 2MASX J04372814-4711298 0.05300 183 | 069.5530 -10.7930 230 MCG -02-12-050 0.03640 184 | 070.0690 -59.6910 231 ESO 118-IG 033 NED01 0.05770 185 | 070.1710 +27.6500 232 2MASX J04404770+2739466 0.03800 186 | 070.3120 -27.0700 234 IRAS 04392-2713 0.08350 187 | 070.4850 -08.4160 235 1RXS J044154.5-082639 0.04400 188 | 070.9400 +28.9650 236 UGC 03142 0.02170 189 | 071.0000 +28.2340 237 2MASX J04440903+2813003 0.01130 190 | 071.1220 -28.1660 238 PKS 0442-28 0.14700 191 | 071.5930 +18.4400 239 UGC 3157 0.01540 192 | 072.8810 -03.8440 242 MCG -01-13-025 0.01590 193 | 072.9670 -58.1800 243 RBS 594 0.09070 194 | 073.3540 +04.0730 245 CGCG 420-015 0.02940 195 | 073.6580 -43.2530 246 2MASX J04544295-4314231 0.08770 196 | 074.0320 -75.5200 247 ESO 033- G 002 0.01810 197 | 075.5790 +03.5340 252 2MASX J05020903+0331499 0.01600 198 | 075.7280 +23.0090 254 LEDA 097068 0.05770 199 | 076.1790 -73.8030 256 2MASX J05043414-7349269 0.04520 200 | 076.4400 -23.8550 258 2MASX J05054575-2351139 0.03500 201 | 077.0900 +17.4120 260 CGCG 468-002 NED01 0.01750 202 | 077.6840 +16.5070 261 IRAS 05078+1626 0.01790 203 | 077.9960 -18.5300 262 ESO 553- G 022 0.04210 204 | 078.4000 +66.4950 263 CGCG 307-007 0.01490 205 | 078.8230 +18.9080 265 2MASX J05151978+1854515 0.02349 206 | 079.0490 -00.1380 266 Ark 120 0.03230 207 | 079.0780 +19.4700 267 2MFGC 04298 0.02120 208 | 079.0960 -10.5550 268 MCG -02-14-009 0.02850 209 | 079.9120 -32.6770 269 ESO 362-18 0.01250 210 | 079.9220 -45.7770 270 PICTOR A 0.03510 211 | 080.2440 -25.3580 272 2MASX J05210136-2521450 0.04260 212 | 081.0310 -12.1890 274 IRAS 05218-1212 0.04900 213 | 081.5840 -21.2850 279 ESO 553- G 043 0.02780 214 | 083.2230 +13.7200 285 2MASX J05325752+1345092 0.02335 215 | 083.4690 -13.3300 286 MCG -02-15-004 0.02897 216 | 085.8850 -27.6750 301 MCG -05-14-012 0.00990 217 | 086.0300 -43.4680 302 2MASX J05440009-4325265 0.04500 218 | 086.0660 +59.1360 303 2MASX J05442257+5907361 0.06600 219 | 086.8190 +50.6610 304 2MASX J05471492+5038251 0.03600 220 | 087.1070 -47.8010 305 ESO 205-IG 003 NED01 0.05050 221 | 088.0390 -07.4340 308 NGC 2110 0.00780 222 | 088.1570 +59.4840 309 IRAS 05480+5927 0.05850 223 | 088.7630 +46.4460 310 MCG +08-11-011 0.02050 224 | 089.5290 -38.3570 313 2MASX J05580206-3820043 0.03390 225 | 089.9510 -50.4590 314 PKS 0558-504 0.13720 226 | 090.1590 +00.1150 315 IRAS 05581+0006 0.11470 227 | 090.6150 +65.3490 317 UGC 03386 0.01540 228 | 091.4950 -27.9100 318 2MASX J06054896-2754398 0.08920 229 | 091.5700 -86.6260 319 ESO 005- G 004 0.00620 230 | 092.4450 -62.7000 320 2MASX J06100652-6243125 0.15700 231 | 092.4450 -62.7000 321 2MASX J06083867-6247168 0.09896 232 | 093.8360 +71.0370 325 Mrk 3 0.01350 233 | 095.8200 +64.7810 328 NVSS J062335+644538 0.08600 234 | 095.9220 -60.9560 329 ESO 121-IG 028 0.04030 235 | 095.9380 -32.1930 330 ESO 426- G 002 0.02240 236 | 096.6420 -37.0280 334 6dF J0626586-370559 0.03930 237 | 097.6630 +63.7080 335 UGC 03478 0.01280 238 | 098.2080 +63.7190 337 UGC 3478 0.04130 239 | 098.5750 -74.7420 338 1RXS J063401.1-744629 0.11200 240 | 100.0380 -25.9040 342 ESO 490-IG026 0.02480 241 | 100.1130 -43.3490 344 2MASX J06403799-4321211 0.06100 242 | 100.3520 +32.8360 345 2MASX J06411806+3249313 0.04700 243 | 101.5910 +53.0830 346 UGC 3533 0.03590 244 | 103.1410 +74.4160 347 Mrk 6 0.01880 245 | 103.9260 +39.9750 349 UGC 03601 0.01710 246 | 104.0910 -49.3160 350 2MASX J06561197-4919499 0.04100 247 | 105.3100 -32.6050 354 2MASX J07011026-3234534 0.04380 248 | 106.8300 +64.5880 357 VII Zw 118 0.07970 249 | 107.2310 -46.6840 358 2MASX J07084326-4642494 0.04690 250 | 107.3330 -36.0290 360 PKS 0707-35 0.11080 251 | 108.5450 +35.2920 362 MCG +06-16-028 0.01570 252 | 108.5530 +45.6720 363 Mrk 376 0.05600 253 | 109.5210 +44.0660 366 RX J0718.0+4405 0.06140 254 | 111.4500 +29.9990 369 CGCG 147-020 0.01880 255 | 111.6780 +37.0000 371 2MASX J07263532+3700028 0.19000 256 | 113.2630 +45.9590 376 1RXS J073308.7+455511 0.14140 257 | 114.2460 +58.7880 378 Mrk 9 0.03990 258 | 115.5640 +80.4060 381 3C 184.1 0.11820 259 | 115.6550 +49.8030 382 Mrk 79 0.02220 260 | 115.7590 +65.2090 383 Mrk 78 0.03710 261 | 116.0060 +29.2360 385 UGC 03995B 0.01600 262 | 116.8540 +60.9120 389 Mrk 10 0.02930 263 | 116.8890 -73.4390 390 2MASX J07473839-7325533 0.03670 264 | 118.1020 +19.6150 394 2MASX J07521780+1935423 0.11720 265 | 118.2740 +45.9780 395 B3 0749+460A 0.05180 266 | 119.9580 +23.3890 399 2MASX J07595347+2323241 0.02920 267 | 120.0860 +26.6330 400 IC 0486 0.02690 268 | 120.4690 -49.7690 402 ESO 209- G 012 0.04050 269 | 120.8700 +08.7040 403 2MASX J08032736+0841523 0.04680 270 | 121.0380 +05.1010 404 Mrk 1210 0.01350 271 | 121.2710 -01.1710 406 2MASX J08045299-0108476 0.09190 272 | 121.9710 +38.9880 408 Mrk 622 0.02320 273 | 122.7260 +76.0320 409 PG 0804+761 0.10000 274 | 123.5800 +04.3650 411 CGCG 031-072 0.03310 275 | 124.4180 +02.8030 412 1RXS J081749.0+025104 0.10600 276 | 124.5700 +01.3830 413 2MASX J08181469+0122266 0.08900 277 | 125.7520 -04.9130 416 Fairall 272 0.02180 278 | 127.4580 +41.9030 418 2MASX J08294266+4154366 0.12630 279 | 127.6060 -67.3810 419 2MASX J08301655-6725289 0.03480 280 | 128.1560 +37.1310 420 FBQS J083225.3+370736 0.09190 281 | 129.9460 -12.2580 425 3C 206 0.19760 282 | 130.0480 +29.7880 426 4C +29.30 0.06470 283 | 130.5040 +08.0020 429 2MASX J08420557+0759253 0.13380 284 | 130.9090 +35.8620 430 2MASX J08434495+3549421 0.05400 285 | 131.3450 +14.3440 432 2MASX J08451850+1420345 0.06060 286 | 133.8320 +64.4110 434 MCG +11-11-032 0.03600 287 | 133.9220 -28.9260 435 2MASX J08551746-2854218 0.07300 288 | 134.0030 +78.1940 436 NGC 2655 0.00470 289 | 134.9100 +44.9090 437 NGC 2712 0.00610 290 | 135.6210 +60.1070 439 Mrk 18 0.01110 291 | 135.6550 -68.2290 440 NGC 2788A 0.01330 292 | 135.8640 -74.2400 442 2MASX J09034285-7414170 0.09100 293 | 136.1640 +55.5960 443 2MASX J09043699+5536025 0.03700 294 | 137.9040 +45.4890 446 2MASX J09112999+4528060 0.02680 295 | 139.3270 -64.9050 448 2MASX J09172716-6456271 0.08600 296 | 139.6320 +16.2870 449 Mrk 704 0.02920 297 | 139.9130 +55.4030 450 Mrk 106 0.12340 298 | 140.0370 +37.2080 451 IC 2461 0.00750 299 | 140.1770 -08.0640 453 MCG -01-24-012 0.01960 300 | 140.9470 +22.9250 455 MCG +04-22-042 0.03230 301 | 140.9930 -31.6950 456 2MASX J09235371-3141305 0.04240 302 | 141.2630 -84.3790 457 2MASX J09261742-8421330 0.06320 303 | 141.2950 +52.2740 458 Mrk 110 0.03530 304 | 141.5210 +69.5090 459 2MASX J09254750+6927532 0.03900 305 | 141.5260 +12.7690 460 Mrk 705 0.02910 306 | 141.8990 +23.0070 461 NGC 2885 0.02630 307 | 142.4270 +62.5200 463 CGCG 312-012 0.02560 308 | 143.6680 -21.9320 465 ESO 565- G 019 0.01630 309 | 143.8660 +26.2660 466 2MASX J09352707+2617093 0.12220 310 | 143.9830 +61.3350 467 MCG +10-14-025 0.03940 311 | 144.0110 -65.8310 468 2MASX J09360622-6548336 0.03920 312 | 145.5550 +23.7290 470 CGCG 122-055 0.02140 313 | 146.4480 -14.3020 471 NGC 2992 0.00770 314 | 146.9340 -30.9380 472 MCG -05-23-016 0.00850 315 | 146.9340 +07.4120 473 3C 227 0.08580 316 | 147.5090 +73.2650 474 VII Zw 292 0.05810 317 | 147.9730 -06.8280 475 NGC 3035 0.01450 318 | 148.8630 +69.1180 477 M 81 319 | 149.8580 -22.8470 480 NGC 3081 0.00800 320 | 149.8990 +13.0340 481 NGC 3080 0.03540 321 | 149.9490 -31.2160 482 2MASX J09594263-3112581 0.03700 322 | 150.4470 +28.7960 483 3C 234.0 0.18490 323 | 150.5030 +55.6510 484 NGC 3079 0.00370 324 | 150.8120 -37.3990 485 ESO 374- G 025 0.02370 325 | 151.5000 -23.0640 486 ESO 499- G 041 0.01280 326 | 152.2100 -09.9180 488 2MASX J10084862-0954510 0.05730 327 | 152.4440 -42.8110 489 ESO 263- G 013 0.03330 328 | 153.3200 -35.9680 492 ESO 374- G 044 0.02840 329 | 154.2960 -04.0710 493 2MASX J10171680-0404558 0.04080 330 | 155.1400 -02.6040 495 2MASX J10195855-0234363 0.06020 331 | 155.4110 -03.4850 496 ARK 241 0.04080 332 | 155.8980 +19.8510 497 NGC 3227 0.00390 333 | 157.3680 -38.3680 498 ESO 317- G 038 0.01520 334 | 157.8820 -42.0760 499 ESO 317- G 041 0.01930 335 | 157.9710 -14.2940 501 2MASSi J1031543-141651 0.08600 336 | 157.9900 -34.8630 502 NGC 3281 0.01070 337 | 158.1860 -28.5870 503 ESO 436- G 034 0.01210 338 | 158.4300 +73.0370 504 CGCG 333-038 0.02200 339 | 158.5260 +52.9730 505 SDSS J103315.71+525217.8 0.06530 340 | 160.0870 -46.4080 509 2MASX J10402231-4625264 0.02000 341 | 160.6110 +00.7360 511 SDSS J104208.36+004206.1 0.09520 342 | 160.8520 +11.0680 512 SDSS J104326.47+110524.2 0.04760 343 | 161.0540 +70.3940 513 MCG +12-10-067 0.03360 344 | 161.2320 +38.1550 515 MCG +06-24-008 0.02590 345 | 161.6730 +25.9560 517 UGC 05881 0.02050 346 | 162.1050 -25.1800 518 NGC 3393 0.01250 347 | 162.3830 +22.9960 519 Mrk 417 0.03280 348 | 162.8100 -17.0510 520 NGC 3431 0.01750 349 | 162.8100 -17.0510 521 2MASX J10513744-1707292 0.01830 350 | 163.1670 +10.6320 522 2MASX J10523297+1036205 0.08780 351 | 164.9640 +65.1160 523 2MASX J10594361+6504063 0.08360 352 | 165.2300 +11.0620 524 Mrk 728 0.03560 353 | 165.8610 +37.4800 525 FBQS J110340.2+372925 0.07390 354 | 166.4480 +58.9130 528 CGCG 291-028 0.04770 355 | 166.4480 +58.9130 529 2MASX J11053754+5851206 0.19160 356 | 166.6610 +72.5770 530 NGC 3516 0.00880 357 | 167.7030 -28.5350 531 ESO 438- G 009 0.02400 358 | 168.4520 +09.5280 532 IC 2637 0.02920 359 | 168.5300 +20.3720 533 NGC 3588 NED01 0.02620 360 | 168.5510 +79.6870 534 MCG +13-08-056 0.03720 361 | 168.8290 +54.4160 535 MCG +09-19-015 NED02 0.07030 362 | 170.1780 -43.2910 538 ESO 265- G 023 0.05600 363 | 171.3490 +54.3820 542 ARP 151 0.02110 364 | 171.6230 +35.2100 543 Mrk 423 0.03230 365 | 171.8610 +19.1600 544 2MASX J11271632+1909198 0.10550 366 | 172.9030 -12.5360 547 2MASX J11315154-1231587 0.65400 367 | 173.1330 +52.9940 548 NGC 3718 0.00330 368 | 173.1990 +10.2630 549 IC 2921 0.04370 369 | 174.1500 +21.5820 552 Mrk 739E 0.02990 370 | 174.7230 +25.4870 554 2MASX J11383367+2523532 0.02540 371 | 174.7230 +25.4870 555 SDSS J113915.13+253557.9 0.21950 372 | 174.7320 +59.1990 556 SBS 1136+594 0.06010 373 | 174.7390 -23.3660 557 HE 1136-2304 0.02700 374 | 174.7610 -37.7360 558 NGC 3783 0.00970 375 | 174.9450 +31.9480 560 NGC 3786 0.00890 376 | 175.2780 +21.9220 561 PG 1138+222 0.06320 377 | 175.5520 +10.3440 562 NGC 3822 0.02090 378 | 176.1110 +36.8780 565 KUG 1141+371 0.03810 379 | 176.1740 +79.6800 566 UGC 06728 0.00650 380 | 176.3970 -18.4560 567 2MASX J11454045-1827149 0.03290 381 | 176.4160 +58.9810 568 MCG +10-17-061 0.00990 382 | 177.0380 +09.0060 572 2MASX J11475508+0902284 0.06880 383 | 177.1960 +29.6410 573 MCG +05-28-032 0.02300 384 | 177.3220 -04.2410 574 2MASX J11491868-0416512 0.08450 385 | 177.3770 +53.2670 575 SDSS J114921.52+532013.4 0.09510 386 | 178.0200 -11.3910 576 PG 1149-110 0.04900 387 | 178.1700 -05.1920 577 MCG -01-30-041 0.01880 388 | 179.5300 +55.4430 579 NGC 3998 0.00350 389 | 179.7160 +42.5700 580 IC 0751 0.03120 390 | 179.9170 -20.0270 581 2MASSi J1159410-195924 0.45000 391 | 180.2410 +06.8060 582 2MASX J12005792+0648226 0.03600 392 | 180.3090 -03.6850 583 Mrk 1310 0.01940 393 | 180.7490 +44.5240 585 NGC 4051 0.00230 394 | 181.1250 +20.3060 586 ARK 347 0.02240 395 | 181.2000 +27.9610 587 GQ Com 0.16530 396 | 181.2490 +31.1820 588 UGC 07064 0.02500 397 | 181.4790 +49.9850 589 2MASX J12055599+4959561 0.06310 398 | 181.5560 +52.7250 590 NGC 4102 0.00280 399 | 181.8730 +33.8370 591 B2 1204+34 0.07910 400 | 182.3020 +47.0430 592 Mrk 198 0.02420 401 | 182.3590 +43.6750 593 NGC 4138 0.00300 402 | 182.5210 -46.6140 594 2MASX J12100404-4636274 0.03150 403 | 182.6740 +39.4170 595 NGC 4151 0.00330 404 | 182.6920 +38.3090 596 KUG 1208+386 0.02280 405 | 182.8150 -39.5680 597 2MASX J12111425-3933268 0.06110 406 | 183.2280 +07.0310 599 NGC 4180 0.00700 407 | 183.2750 +32.6420 600 CGCG 187-022 0.02490 408 | 183.4580 -05.5180 604 2MASX J12135456-0530193 0.06600 409 | 183.5630 +29.5510 605 Was 49b 0.06320 410 | 184.2360 -26.2350 606 ESO 505-IG 030 0.03970 411 | 184.2790 +07.1880 607 NGC 4235 0.00800 412 | 184.6110 +29.8480 608 Mrk 766 0.01290 413 | 184.7290 +47.3200 609 M 106 0.00150 414 | 185.4340 +75.3180 611 Mrk 205 0.07080 415 | 185.8460 +02.6790 613 Mrk 50 0.02340 416 | 186.4530 +12.6790 615 NGC 4388 0.00840 417 | 186.4850 +33.5460 616 NGC 4395 0.00110 418 | 187.8650 +57.9540 621 NGC 4500 0.01040 419 | 187.9520 -47.9820 622 2MASX J12313717-4758019 0.02780 420 | 187.9990 +20.1590 623 Mrk 771 0.06300 421 | 188.0120 -42.3170 624 1RXS J123212.3-421745 0.09800 422 | 188.8710 -39.8910 626 NGC 4507 0.01180 423 | 189.6550 +09.4680 628 2MASX J12384342+0927362 0.08290 424 | 189.7340 -27.3090 629 ESO 506-G027 0.02500 425 | 189.7800 -16.1720 630 LEDA 170194 0.03670 426 | 189.9220 -05.3290 631 NGC 4593 0.00900 427 | 190.0390 +34.9460 632 Mrk 653 0.04310 428 | 190.0390 +34.9460 633 NGC 4619 0.02310 429 | 190.1360 -33.6030 634 ESO 381- G 007 0.05500 430 | 190.1940 +27.5770 635 KUG 1238+278A 0.05650 431 | 191.6730 +54.5320 638 NGC 4686 0.01670 432 | 193.0660 -13.3810 641 NGC 4748 0.01460 433 | 193.3760 -41.6150 643 ESO 323-32 0.01600 434 | 193.7180 -26.9300 644 6dF J1254564-265702 0.05910 435 | 195.0220 +16.5750 648 2MASX J13000533+1632151 0.08000 436 | 195.7200 +16.4030 651 Mrk 783 0.06720 437 | 195.9940 +53.7960 652 SBS 1301+540 0.02990 438 | 196.0790 -05.5290 653 NGC 4941 0.00370 439 | 196.0830 -10.3740 654 NGC 4939 0.01040 440 | 196.3410 -49.4720 655 NGC 4945 0.00190 441 | 196.6630 -40.4040 657 ESO 323-077 0.01500 442 | 196.6630 -40.4040 658 ESO 323- G 081 0.01590 443 | 197.2830 +11.6170 659 NGC 4992 0.02510 444 | 197.7560 +08.6130 662 2MASX J13105723+0837387 0.05270 445 | 198.3000 -11.1220 663 II SZ 010 0.03400 446 | 198.4060 +36.8260 665 NGC 5033 0.00290 447 | 198.8530 +44.4000 666 UGC 08327 NED02 0.03660 448 | 200.2980 +08.9860 669 NGC 5100 NED02 0.03190 449 | 200.6220 -16.7480 670 MCG -03-34-064 0.01650 450 | 202.7870 -25.4020 674 ESO 509- G 038 0.02600 451 | 203.0470 -77.8810 676 ESO 021- G 004 0.00980 452 | 203.3640 -34.0200 677 ESO 383-18 0.01300 453 | 203.9600 +02.9900 679 NGC 5231 0.02180 454 | 203.9640 -34.2950 680 MCG -06-30-015 0.00770 455 | 204.5800 +04.5440 682 NGC 5252 0.02300 456 | 205.2760 -14.6380 683 2MASX J13411287-1438407 0.04180 457 | 205.2850 +67.7100 684 NGC 5283 0.01040 458 | 205.4790 +35.6230 686 NGC 5273 0.00350 459 | 206.0900 +19.5520 687 CGCG 102-048 0.02690 460 | 206.3270 +41.7050 688 NGC 5290 0.00860 461 | 206.6040 +19.4060 689 2MASX J13462846+1922432 0.08400 462 | 206.7190 +73.4290 690 2MASSi J1346085+732053 0.29000 463 | 206.9370 +02.2050 693 SWIFT J1347.7+0212 0.10970 464 | 207.3230 -30.3260 694 IC 4329A 0.01600 465 | 207.4450 +02.0990 695 UM 614 0.03270 466 | 207.9000 -18.2330 696 2MASX J13512953-1813468 0.01220 467 | 208.2880 +69.3130 697 Mrk 279 0.03040 468 | 208.4160 -11.3690 698 2MASX J13532820-1123055 0.06880 469 | 208.5300 -37.8070 699 TOLOLO 00113 0.05200 470 | 208.9310 +35.4040 701 2MASX J13553383+3520573 0.10160 471 | 208.9780 +38.5630 702 Mrk 464 0.05010 472 | 208.9840 +18.3710 703 Mrk 463 0.05040 473 | 209.1670 -19.4980 704 ESO 578- G 009 0.03500 474 | 212.0300 -30.4150 707 2MASX J14080674-3023537 0.02350 475 | 212.7000 -42.4830 710 2MASX J14104482-4228325 0.03390 476 | 213.3080 -03.2360 712 NGC 5506 0.00620 477 | 214.1860 -11.9590 713 2MASX J14165001-1158577 0.09860 478 | 214.2330 -46.6590 714 IGR J14175-4641 0.07660 479 | 214.3710 +61.6780 715 2MASX J14174289+6141523 0.11880 480 | 214.4970 +25.1270 717 NGC 5548 0.01720 481 | 214.8390 -26.6630 719 ESO 511-G030 0.02240 482 | 215.3860 +47.8230 722 SBS 1419+480 0.07230 483 | 216.1090 +24.6180 723 NGC 5610 0.01690 484 | 216.8670 +19.8200 726 Mrk 813 0.11050 485 | 217.3010 +01.3030 728 Mrk 1383 0.08650 486 | 217.7730 +28.3060 730 Mrk 684 0.04610 487 | 218.1930 -44.2070 731 NGC 5643 0.00400 488 | 218.4880 +05.4630 733 NGC 5674 0.02490 489 | 218.7300 +48.6580 734 NGC 5683 0.03620 490 | 219.0680 +58.8090 735 Mrk 817 0.03140 491 | 219.1980 -16.2660 736 2MASX J14364961-1613410 0.14450 492 | 219.7850 +14.3020 737 2MASX J14391186+1415215 0.07140 493 | 220.1560 +53.4950 738 Mrk 477 0.03770 494 | 220.6130 -17.2700 739 NGC 5728 0.00930 495 | 221.4220 +27.0440 740 CGCG 164-019 0.02990 496 | 222.1670 -40.1570 744 IGR 14488-4008 0.12300 497 | 223.2890 +25.8970 748 2MASX J14530794+2554327 0.04900 498 | 224.4370 -43.1400 751 IC 4518A 0.01630 499 | 226.0170 +10.4270 753 Mrk 841 0.03640 500 | 226.5590 +03.7540 754 Mrk 1392 0.03610 501 | 226.5590 +03.7540 755 2MASX J15064412+0351444 0.03770 502 | 227.2080 -00.2210 757 Mrk 1393 0.05430 503 | 228.0100 -21.3220 760 2MASX J15115979-2119015 0.04460 504 | 228.6400 -81.3620 765 2MASX J15144217-8123377 0.06840 505 | 228.7880 +42.0530 766 NGC 5899 0.00860 506 | 229.9020 +65.6370 767 CGCG 319-007 0.04400 507 | 230.4210 +03.6140 769 2MASS J15213967+0337292 0.12640 508 | 230.8710 +63.6740 770 4C +63.22 0.20400 509 | 232.4740 -13.0340 771 2MASX J15295830-1300397 0.10390 510 | 233.3510 -08.6990 772 MCG -01-40-001 0.02270 511 | 233.9960 +57.9160 774 Mrk 290 0.02960 512 | 235.5930 -14.1790 776 2MASX J15422399-1411055 0.09640 513 | 236.5880 +69.5040 778 2MASX J15462424+6929102 0.03800 514 | 236.8670 +20.8380 779 3C 323.1 0.26400 515 | 237.1110 -13.7500 783 NGC 5995 0.02520 516 | 238.4040 +23.7920 785 4C +23.42 0.11500 517 | 238.4580 +26.1060 786 SDSS J155334.73+261441.4 0.16640 518 | 241.7820 +48.5770 793 2MASX J16071388+4833266 0.12500 519 | 242.2010 +84.9980 794 LEDA 100168 0.18300 520 | 243.5090 +65.7390 797 Mrk 876 0.12900 521 | 244.4530 +32.3790 800 3C 332 0.15100 522 | 244.9750 +81.0690 804 CGCG 367-009 0.02740 523 | 246.8890 +85.5330 810 VII Zw 653 0.06310 524 | 247.0130 +51.7740 811 Mrk 1498 0.05470 525 | 247.4720 +67.3740 815 Mrk 885 0.02530 526 | 247.6320 +39.4250 816 2MASX J16303265+3923031 0.03060 527 | 247.8650 +23.9060 817 2MASX J16311554+2352577 0.05900 528 | 250.7210 +70.6430 828 NGC 6232 0.01480 529 | 252.6670 +04.5790 836 LEDA 214543 0.03210 530 | 253.0540 +55.8990 839 UGC 10593 0.02910 531 | 253.2670 +02.4070 841 NGC 6240 0.02450 532 | 253.2950 +23.8040 842 2MASX J16531506+2349431 0.10340 533 | 257.1760 +21.8990 862 2MASX J17085915+2153082 0.07230 534 | 259.2710 -62.8130 875 NGC 6300 0.00370 535 | 260.4450 +43.2310 880 RBS 1640 0.13700 536 | 260.8040 +34.2950 882 4C +34.47 0.20600 537 | 260.9150 +36.4900 883 2MASX J17232321+3630097 0.04000 538 | 262.8060 +14.7330 888 2MASX J17311341+1442561 0.08265 539 | 264.4750 -59.9660 898 ESO 139- G 012 0.01700 540 | 265.5630 +18.5430 907 4C +18.51 0.18600 541 | 265.9000 +62.8590 909 CGCG 300-062 0.03300 542 | 266.4450 +29.1460 912 1RXS J174538.1+290823 0.11060 543 | 266.9420 +68.6210 924 Mrk 507 0.05590 544 | 270.0690 +66.6160 942 NGC 6552 0.02650 545 | 271.9450 +11.3690 950 2MASX J18074992+1120494 0.08000 546 | 273.9870 +42.6140 960 UGC 11185 NED02 0.04120 547 | 275.4020 +64.3320 967 H 1821+643 0.29700 548 | 275.4140 +59.8910 968 2MASX J18212680+5955209 0.09900 549 | 276.0650 -56.3860 970 IC 4709 0.01690 550 | 276.0850 +18.7790 971 2MASX J18241083+1846088 0.06700 551 | 276.6570 +32.8810 978 2MASX J18263239+3251300 0.02200 552 | 278.7660 +32.6880 984 3C 382 0.05790 553 | 279.2820 -59.4200 986 Fairall 49 0.02020 554 | 279.5650 -65.4350 988 ESO 103-035 0.01330 555 | 280.6400 +79.7750 994 3C 390.3 0.05610 556 | 281.1580 -62.3680 995 Fairall 51 0.01420 557 | 281.4730 +72.2180 998 CGCG 341-006 0.04630 558 | 282.0120 -78.5260 1002 2MASX J18470283-7831494 0.07410 559 | 283.4850 -78.9030 1009 ESO 025- G 002 0.02890 560 | 284.2050 -54.6960 1015 2MASX J18564935-5442298 0.05630 561 | 284.3290 -78.5070 1016 2MASX J18570768-7828212 0.04200 562 | 285.9850 +33.8150 1020 UGC 11397 0.01510 563 | 286.3440 +42.5150 1021 CGCG 229-015 0.02790 564 | 288.2840 -50.1550 1027 ESO 231- G 026 0.06250 565 | 289.8390 -29.9650 1031 PKS 1916-300 0.16680 566 | 290.2900 -58.7070 1032 ESO 141- G 055 0.03600 567 | 291.6620 +41.5620 1037 2MASX J19263018+4133053 0.07100 568 | 294.3810 -06.2230 1042 2MASX J19373299-0613046 0.01030 569 | 294.5440 -51.1730 1043 2MASX J19380437-5109497 0.04000 570 | 295.1110 -30.2540 1045 IGR J19405-3016 0.05200 571 | 295.6480 -10.3380 1046 NGC 6814 0.00520 572 | 298.0580 +02.5020 1051 3C 403 0.05900 573 | 300.2390 -18.1540 1060 2MASX J20005575-1810274 0.03730 574 | 301.6150 +56.3460 1062 2MASX J20063331+5620364 0.04300 575 | 301.7530 -34.5440 1063 MCG-06-44-018 0.02500 576 | 302.2430 -61.0840 1064 NGC 6860 0.01490 577 | 304.4750 -55.6410 1072 PKS 2014-55 0.06000 578 | 306.7860 -02.3190 1076 II Zw 083 0.02910 579 | 307.6950 -75.4960 1079 IRAS 20247-7542 0.11430 580 | 308.3670 +21.7850 1082 4C +21.55 0.17350 581 | 308.9480 -50.2140 1085 ESO 234- G 050 0.00880 582 | 310.0110 -51.4180 1087 ESO 234-IG 063 0.05370 583 | 310.6180 +75.1190 1088 4C +74.26 0.10400 584 | 311.0610 -10.7280 1090 Mrk 509 0.03440 585 | 312.9800 -57.0670 1092 IC 5063 0.01140 586 | 315.6150 -28.1830 1097 ESO 464- G016 0.03640 587 | 317.2870 -09.6980 1099 2MASX J21090996-0940147 0.02650 588 | 318.4930 +82.0950 1102 2MASX J21140128+8204483 0.08400 589 | 319.0980 +25.2200 1104 2MASX J21161028+2517010 0.15300 590 | 319.8600 +33.5270 1106 2MASX J21192912+3332566 0.05070 591 | 320.9570 +25.0950 1108 3C 433 0.10160 592 | 323.0300 -33.7090 1114 6dF J2132022-334254 0.02930 593 | 323.7180 -27.4810 1116 2MASX J21344509-2725557 0.06700 594 | 324.0710 -62.3970 1118 1RXS J213623.1-622400 0.05880 595 | 324.2590 -64.6160 1119 IRAS F21329-6451 0.07040 596 | 324.4490 -14.5540 1120 PKS 2135-14 0.20030 597 | 324.6980 +32.0670 1121 CGCG 493-002 0.02480 598 | 326.4170 +11.0480 1125 RX J2145.5+1102 0.20900 599 | 327.0840 -34.8970 1127 NGC 7130 0.01620 600 | 327.5950 -18.9850 1128 6dF J2149581-185924 0.15810 601 | 329.3060 -69.7010 1131 PKS 2153-69 0.02830 602 | 329.3700 -06.2230 1132 EUVE J2157-06.1 0.17600 603 | 330.5000 -31.8710 1135 NGC 7172 0.00870 604 | 331.0590 +03.5540 1138 2MASX J22041914+0333511 0.06110 605 | 331.8130 +10.2170 1139 NGC 7212 NED02 0.02670 606 | 332.2510 -27.8010 1141 NGC 7214 0.02310 607 | 333.5510 -25.9350 1145 2MASX J22140917-2557487 0.05190 608 | 334.2510 +14.2240 1146 Mrk 304 0.06580 609 | 335.9370 +11.8530 1150 MCG +02-57-002 0.02900 610 | 335.9730 -02.1310 1151 3C 445 0.05620 611 | 336.7590 +36.3560 1152 MCG +06-49-019 0.02130 612 | 338.7120 -25.6950 1156 ESO 533- G 050 0.02640 613 | 338.9640 -26.0590 1157 NGC 7314 0.00480 614 | 339.0120 +33.9960 1158 NGC 7319 0.02250 615 | 339.1420 +25.7510 1160 IC 5233 0.02460 616 | 339.2210 -12.5680 1161 Mrk 915 0.02410 617 | 340.0570 +08.0170 1162 MCG +01-57-016 0.02500 618 | 340.6120 -37.1170 1163 ESO 406- G 004 0.02900 619 | 341.4350 +39.6850 1165 3C 452 0.08110 620 | 342.1690 -51.1530 1166 2MASX J22484165-5109338 0.10000 621 | 342.1820 +17.4210 1167 2MASX J22484430+1727034 0.08600 622 | 342.6870 -08.8800 1168 2MASX J22505170-0854572 0.06490 623 | 343.5160 -17.5780 1172 MR 2251-178 0.06400 624 | 343.5580 +11.7580 1173 UGC 12243 0.02830 625 | 343.5580 +11.7580 1174 UGC 12237 0.02830 626 | 344.1210 +05.4360 1176 2MASX J22563642+0525167 0.06600 627 | 344.7040 +40.9200 1177 UGC 12282 0.01700 628 | 344.8840 +24.9330 1178 KAZ 320 0.03450 629 | 345.3560 -59.2680 1179 2MASX J23013626-5913210 0.14900 630 | 345.5130 +15.9470 1180 NGC 7465 0.00660 631 | 345.8000 +08.8830 1182 NGC 7469 0.01630 632 | 346.1720 -08.6770 1183 Mrk 926 0.04690 633 | 346.2280 +12.3300 1184 NGC 7479 0.00790 634 | 346.7980 +04.5760 1185 PG 2304+042 0.04200 635 | 346.9690 +22.7120 1186 SWIFT J2307.9+2245 0.03500 636 | 347.0230 +40.2630 1187 2MASX J23075724+4016393 0.07400 637 | 349.5880 -42.3840 1188 NGC 7582 0.00520 638 | 349.7370 +00.2680 1189 NGC 7603 0.02950 639 | 350.6430 -06.7590 1192 2MASX J23222444-0645375 0.03300 640 | 351.3670 -38.4490 1194 LCRS B232242.2-384320 0.03590 641 | 351.4660 +21.8670 1195 2MASX J23255427+2153142 0.12000 642 | 352.2790 +03.5060 1198 NGC 7679 0.01710 643 | 355.4800 +30.5830 1202 UGC 12741 0.01740 644 | 355.9700 +05.5550 1203 2MASX J23435956+0538233 0.05600 645 | 356.1860 -42.7560 1204 2MASX J23444387-4243124 0.59750 646 | 357.9690 -01.1500 1206 PKS 2349-01 0.17400 647 | 359.8130 -60.9600 1210 PKS 2356-61 0.09630 648 | --------------------------------------------------------------------------------