├── .gitignore ├── LICENSE ├── README.md ├── image ├── AHU.bmp ├── AN.bmp ├── Anhui University.bmp ├── Cameraman.bmp ├── guang.bmp ├── lena.bmp ├── lena_std.tif └── 安徽大学校徽 │ ├── 100.bmp │ ├── 200.bmp │ ├── 300.bmp │ ├── 400.bmp │ ├── 460.bmp │ └── 安徽大学校徽.psd ├── source ├── Initialization_Path.m ├── copyMakeBorder.m ├── expandMAT.m ├── getAxicon.m ├── getAxilensI.m ├── getAxilensII.m ├── getAxilensIII.m ├── getBlaze.m ├── getColorHologram.m ├── getFWHM.m ├── getLens.m ├── getLensExact.m ├── iterFourier.m ├── iterFresnel.m ├── propDFFT.m ├── propDOE.m ├── propTFFT.m ├── recFourier.m ├── recFresnel.m ├── repImage.m ├── savePhase.m ├── showLCOS.m ├── showPhase.m ├── stepPhase.m └── writeFDTD.m └── 使用范例 ├── 1、傅里叶全息图 └── FourierHologram.m ├── 2、菲涅尔全息图 └── FresnelHologram.m ├── 3、动态全息图 ├── Car │ ├── Car01.png │ ├── Car02.png │ ├── Car03.png │ ├── Car04.png │ ├── Car05.png │ ├── Car06.png │ ├── Car07.png │ ├── Car08.png │ ├── Car09.png │ ├── Car10.png │ ├── Car11.png │ ├── Car12.png │ ├── Car13.png │ ├── Car14.png │ ├── Car15.png │ ├── Car16.png │ ├── Car17.png │ ├── Car18.png │ ├── Car19.png │ ├── Car20.png │ ├── Car21.png │ ├── Car22.png │ ├── Car23.png │ ├── Car24.png │ ├── Car25.png │ ├── Car26.png │ ├── Car27.png │ ├── Car28.png │ ├── Car29.png │ ├── Car30.png │ ├── Car31.png │ ├── Car32.png │ ├── Car33.png │ ├── Car34.png │ ├── Car35.png │ ├── Car36.png │ ├── Car37.png │ ├── Car38.png │ ├── Car39.png │ ├── Car40.png │ ├── Car41.png │ ├── Car42.png │ ├── Car43.png │ ├── Car44.png │ ├── Car45.png │ ├── Car46.png │ ├── Car47.png │ ├── Car48.png │ ├── Car49.png │ ├── Car50.png │ ├── Car51.png │ ├── Car52.png │ ├── Car53.png │ ├── Car54.png │ ├── Car55.png │ ├── Car56.png │ ├── Car57.png │ ├── Car58.png │ ├── Car59.png │ ├── Car60.png │ ├── Car61.png │ ├── Car62.png │ ├── Car63.png │ ├── Car64.png │ ├── Car65.png │ ├── Car66.png │ ├── Car67.png │ ├── Car68.png │ ├── Car69.png │ ├── Car70.png │ ├── Car71.png │ └── Car72.png └── DynamicHologram.m ├── 4、彩色全息图 ├── ColorHologram.m ├── MonaLisa.jpg └── 彩色全息图.bmp ├── 5、超表面全息图 ├── FDTD_Build.lsf ├── GDSII生成脚本 │ └── gds_automation_script.zip └── Metasurface.m ├── 6、菲涅尔透镜全息图 └── Fresnel_lens_hologram.m ├── 7、轴锥镜全息图 └── AxiconHologram.m ├── 8、透镜性能分析 ├── Axilens_Analyse.m └── Lens_Analyse.m ├── 9、动态彩色全息图 └── Video_ColorHologram.m └── Template.m /.gitignore: -------------------------------------------------------------------------------- 1 | # MATLAB 2 | *.asv -------------------------------------------------------------------------------- /LICENSE: -------------------------------------------------------------------------------- 1 | GNU GENERAL PUBLIC LICENSE 2 | Version 3, 29 June 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 General Public License is a free, copyleft license for 11 | software and other kinds of works. 12 | 13 | The licenses for most software and other practical works are designed 14 | to take away your freedom to share and change the works. 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If not, see . 649 | 650 | Also add information on how to contact you by electronic and paper mail. 651 | 652 | If the program does terminal interaction, make it output a short 653 | notice like this when it starts in an interactive mode: 654 | 655 | Copyright (C) 656 | This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'. 657 | This is free software, and you are welcome to redistribute it 658 | under certain conditions; type `show c' for details. 659 | 660 | The hypothetical commands `show w' and `show c' should show the appropriate 661 | parts of the General Public License. Of course, your program's commands 662 | might be different; for a GUI interface, you would use an "about box". 663 | 664 | You should also get your employer (if you work as a programmer) or school, 665 | if any, to sign a "copyright disclaimer" for the program, if necessary. 666 | For more information on this, and how to apply and follow the GNU GPL, see 667 | . 668 | 669 | The GNU General Public License does not permit incorporating your program 670 | into proprietary programs. If your program is a subroutine library, you 671 | may consider it more useful to permit linking proprietary applications with 672 | the library. If this is what you want to do, use the GNU Lesser General 673 | Public License instead of this License. But first, please read 674 | . 675 | -------------------------------------------------------------------------------- /README.md: -------------------------------------------------------------------------------- 1 | # 全息实验函数库 2 | ![](https://img.shields.io/badge/build-passing-brightgreen) 3 | ![](https://img.shields.io/badge/language-MATLAB-orange) 4 | ![](https://img.shields.io/badge/license-GPLv3-lightgrey) 5 | 6 | 7 | ## 项目简介 8 | 9 | 计算全息 MATLAB 算法库,简化计算全息编程。 10 | 11 | ## 功能特性 12 | 13 | MATLAB 源代码存放在 `source` 目录内 14 | 15 | ``` MATLAB 16 | Initialization_Path.m % 将HoloLib添加到MATLIB搜索路径 17 | copyMakeBorder.m % 扩充图像边界 超过图像区域补零 18 | expandMAT.m % 对矩阵行向和列向扩展 19 | getAxilens.m % 获取大焦比轴锥透镜相位 20 | getBlaze.m % 获取闪耀光栅相位 21 | getLens.m % 获取菲涅尔球面透镜相位 22 | iterFourier.m % 迭代傅里叶算法 23 | iterFresnel.m % 迭代菲涅尔算法 24 | propDFFT.m % 菲涅尔传播-两次傅里叶计算法方法 25 | propTFFT.m % 菲涅尔传播-三次傅里叶计算法方法 26 | propDOE.m % DOE元件菲涅尔传播 27 | recFourier.m % 迭代傅里叶计算重构 28 | recFresnel.m % 迭代菲涅尔计算重构 29 | repImage.m % 图像重复拼接 30 | savePhase.m % 保存相位图 31 | showLCOS.m % 将相位图显示在LCoS上(仅支持MATLAB R2018b及以上版本) 32 | showPhase.m % 相位显示 33 | stepPhase.m % 相位分阶函数 34 | writeFDTD.m % FDTD Solutions 仿真文件数据导出 35 | getColorHologram.m % 获取彩色全息图 36 | ``` 37 | `使用范例` 存放代码使用例子 38 | `image` 存放测试图像 39 | 40 | ## 部署步骤 41 | - 将 `HoloLib_MATLAB\source` 文件夹添加到MATLAB搜索路径 42 | - 将 `HoloLib_MATLAB\iamge` 件夹添加到MATLAB搜索路径 43 | 44 | ## 协议 45 | 46 | * GNU GPLv3 47 | 48 | ## P.S. 49 | * GB2312 50 | -------------------------------------------------------------------------------- /image/AHU.bmp: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/AHU-HoloLab/HoloLib-MATLAB/8dea4f1bbe2e751f243b11732f38e95f5ac47b0c/image/AHU.bmp -------------------------------------------------------------------------------- /image/AN.bmp: -------------------------------------------------------------------------------- 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Parameter 30 | Unit_Width = 260*nm; 31 | Unit_Length = 260*nm; 32 | Ant_Width = 100*nm; 33 | Ant_Length = 200*nm; 34 | SiO2_Thick = 50*nm; 35 | AuBase_Thick = 300*nm; 36 | Ant_Thick = 30*nm; 37 | lambda = 800*nm; 38 | mesh = 30*nm; 39 | 40 | Table = [20, 75, 100, 150]; 41 | 42 | # Main Code 43 | NAME = "test"; 44 | INPATH = ""; 45 | OUTPATH = ""; 46 | Data_raw = readdata(INPATH+NAME+".dat"); 47 | N_x = Data_raw(1, 1); 48 | N_y = Data_raw(1, 2); 49 | 50 | Base_Width = Unit_Width * N_x; 51 | Base_Length = Unit_Length * N_y; 52 | 53 | Base_Pos_x = Base_Width / 2; 54 | Base_Pos_y = Base_Length / 2; 55 | 56 | # addgridattribute("permittivity rotation"); # 添加坐标 57 | 58 | addrect; 59 | #set("render type","wireframe"); 60 | set("name", "SiO2"); 61 | set("x", Base_Pos_x); 62 | set("x span", Base_Width); 63 | set("y", Base_Pos_y); 64 | set("y span", Base_Length); 65 | set("z", -((SiO2_Thick+Ant_Thick) / 2)); 66 | set("z span", SiO2_Thick); 67 | set("material", "SiO2 (Glass) - Palik"); 68 | 69 | addrect; 70 | #set("render type","wireframe"); 71 | set("name", "AuBase"); 72 | set("x", Base_Pos_x); 73 | set("x span", Base_Width); 74 | set("y", Base_Pos_y); 75 | set("y span", Base_Length); 76 | set("z", -((Ant_Thick+AuBase_Thick) / 2 + SiO2_Thick)); 77 | set("z span", AuBase_Thick); 78 | set("material", "Au (Gold) - CRC"); 79 | 80 | Data = Data_raw(2:end, 1:2); 81 | Pos_x = Unit_Width / 2; 82 | Pos_y = Unit_Length / 2; 83 | 84 | addstructuregroup; 85 | set("name","Ant_Group"); 86 | for(y = 1 : 1 : N_y) 87 | { 88 | for(x = 1 : 1 : N_x) 89 | { 90 | addrect; 91 | # set("render type","wireframe"); 92 | set("x", Pos_x); 93 | set("y", Pos_y); 94 | set("z", 0); 95 | set("y span", Ant_Length); 96 | set("z span", Ant_Thick); 97 | set("material", "Au (Gold) - CRC"); 98 | ant_name = "Ant[" + num2str(x) + "x" + num2str(y) + "]"; 99 | set("name", ant_name); 100 | Ant_Width = Table(Data((y-1)*N_x + x, 2)); 101 | set("x span", Ant_Width*nm); 102 | addtogroup("Ant_Group"); 103 | ?"( " + num2str((y-1)*N_x + x) + " of " + num2str(N_x * N_y) + " )"; #Show progress 104 | Pos_x = Pos_x + Unit_Width; 105 | } 106 | Pos_y = Pos_y + Unit_Length; 107 | Pos_x = Unit_Width / 2; 108 | } 109 | 110 | addtfsf; 111 | set("name", "source_X"); 112 | set("injection axis","z"); 113 | set("direction", "Backward"); 114 | set("x",Unit_Width * N_x / 2); 115 | set("x span",Base_Width*2); 116 | set("y",Unit_Length * N_y / 2); 117 | set("y span",Base_Length*2); 118 | set("z min", getnamed("AuBase", "z min")); 119 | set("z max", getnamed("AuBase", "z max") + 0.6*lambda); 120 | set("wavelength start", lambda); 121 | set("wavelength stop", lambda); 122 | set("amplitude", 1); 123 | set("polarization angle", 0); 124 | set("phase", 0); 125 | 126 | addprofile; 127 | set("name","field_profile_monitor"); 128 | set("monitor type",7); # 1 = point, 2 = linear x, 3 = linear y, 4 = linear z, 5 = 2D x-normal, 6 = 2D y-normal, 7 = 2D z-normal, 8 = 3D 129 | set("x",Unit_Width * N_x / 2); 130 | set("x span",Base_Width*4); 131 | set("y",Unit_Length * N_y / 2); 132 | set("y span",Base_Length*4); 133 | set("z", getnamed("source_X", "z max") + 100*nm); 134 | 135 | # 136 | FDTD_Layers = 24; 137 | FDTD_Pos_x = Unit_Length * N_x / 2; 138 | FDTD_Pos_y = Unit_Length * N_y / 2; 139 | FDTD_Pos_z = 0; 140 | FDTD_Span_x = Base_Width;# + 1.2*lambda; 141 | FDTD_Span_y = Base_Length;# + 1.2*lambda; 142 | FDTD_max_z = getnamed("source_X", "z max") + 150*nm; 143 | FDTD_min_z = getnamed("AuBase", "z min") + 200*nm; 144 | # 145 | 146 | addfdtd; 147 | set("dimension",2); # 1 = 2D, 2 = 3D 148 | set("x", FDTD_Pos_x); 149 | set("x span", FDTD_Span_x); 150 | set("y", FDTD_Pos_y); 151 | set("y span", FDTD_Span_y); 152 | set("z",FDTD_Pos_z); 153 | set("z max", FDTD_max_z); 154 | set("z min", FDTD_min_z); 155 | set("auto shutoff min", 1e-5); 156 | set("pml layers", 24); 157 | set("simulation time", 2000*fs); 158 | set("x max bc", "Periodic"); 159 | set("x min bc", "Periodic"); 160 | set("y max bc", "Periodic"); 161 | set("y min bc", "Periodic"); 162 | 163 | save(OUTPATH+NAME+".lsp"); 164 | 165 | ?"[BUILD COMPLETE]"; 166 | 167 | #run; 168 | 169 | #?"[RUN COMPLETE]"; 170 | 171 | -------------------------------------------------------------------------------- /使用范例/5、超表面全息图/GDSII生成脚本/gds_automation_script.zip: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/AHU-HoloLab/HoloLib-MATLAB/8dea4f1bbe2e751f243b11732f38e95f5ac47b0c/使用范例/5、超表面全息图/GDSII生成脚本/gds_automation_script.zip -------------------------------------------------------------------------------- /使用范例/5、超表面全息图/Metasurface.m: -------------------------------------------------------------------------------- https://raw.githubusercontent.com/AHU-HoloLab/HoloLib-MATLAB/8dea4f1bbe2e751f243b11732f38e95f5ac47b0c/使用范例/5、超表面全息图/Metasurface.m -------------------------------------------------------------------------------- /使用范例/6、菲涅尔透镜全息图/Fresnel_lens_hologram.m: 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