搜索资源列表
fpisimulator
- This program simulates Gaussian beam propagation through a Fabry-Perot interferometer %with adjustable error angles.-Gaussian beam prop agation through a Fabry-Perot interferometer % error with adjustable angles.
diffraction2008
- Comparison between Planar beam with Gaussian beam -with Gaussian beam ian beam
gspd
- 生成高斯光速及其变化束腰,平顶目标图片,和各种光束整形的图形-Generating gaussian beam waist and the changes the speed of light Ceiling target images, and various beam shaping graphics
gauss
- 光纤对各种类型的高斯光束的不同非线性作用-Fiber of various types of Gaussian beam in the role of different non-linear
mcml-src
- 美国汪利宏的蒙特卡洛及卷积模拟程序,可以模拟top-hat光束和高斯光束在生物组织中的传输-U.S. WANG Li-hong of the Monte Carlo and convolution simulation program can simulate the top-hat beam and Gaussian beam transport in tissue
beamsize
- 计算激光高斯光束经过单个透镜变换后的光斑尺寸-After calculation of a single lens laser Gaussian beam spot size transformation
GaussianBeam1D
- describe a gaussian beam 1D
GaussianBeam2D
- describe a gaussian beam 2D
Gaussian-propagation
- 高斯光束matlab源程序,可以编译修改。-Gaussian beam matlab source, can compile changes.
BPM_focusing_lens
- simulation of Gaussian Beam Focused by a lens using split-step beam propagation method-BPM_focusing_lens, simulation of Gaussian Beam Focused by a lens using split-step beam propagation method
Gaussian_propagation
- simulation of diffraction of Gaussian beam
Gaussian-beam-transmission
- Gaussian beam transmission Gaussian beam transmission-Gaussian beam transmissionGaussian beam transmission
Gaussian-Beam
- matlab模拟高斯光束在自由空间的传播轨迹-Gaussian Beam Optics
gaussian-beam-3d
- Simulation of Gaussian beam propagation 3d
Hollow-Gaussian-Beam-profiles
- Laguerre-Gaussian beam 空心光束-Laguerre-Gaussian beam
Gaussian-beam-Profiles
- 高斯光束的强度等计算 和matlab画图程序-Calculation of the intensity of Gauss beam
The-beam-diffraction
- 关于高斯光束衍射的程序,可加强对其的理解。包括多种衍射-Application of gaussian beam diffraction, can strengthen the understanding of it. Including a variety of diffraction
LG
- 展示拉盖尔-高斯光束不同弧向量子数、径向量子数、束腰大小以及不同轴向位置上的光强分布。(The work shows the light intensity distribution of Laguerre-Gaussian beam with different parameters including radial quantum number, radial vector quantum number, waist size and different axial positions.)