搜索资源列表
Mie-Matlab-Maetzler-v2
- 计算球形壳层纳米颗粒的散射问题,包括散射系数矩阵,消光系数,吸收系数等。源程序用Matlab编写,方便学习调试-Calculate the scattering of spherical shell nanoparticles, including the scattering coefficient matrix, extinction coefficient, absorption coefficient. Source code written using Matlab to facili
miematlab
- mie理论的matlab源程序金属纳米粒子光散射的Mie 理论[附matlab源程序]-mie theory of metal nanoparticles matlab source of Mie light scattering theory [attached matlab source]
mie_abcd
- 使用matlab计算金属纳米粒子的光散射系数.-Metal nanoparticles using matlab calculations of light scattering coefficient.
ott11
- Optical tweezers computational toolbox,用T Matrix方法计算粒子的散射及捕获,基于Matlab的程序包及说明文件-Optical tweezers computational toolbox to calculate the scattering of the nanoparticles. The code was in Matlab!
IV-curve
- 关于模拟纳米粒子自组装系统的I-V曲线matlab-matlab code for Self-assembly of nanoparticles on the simulated IV curve of the system
ration
- 单分散水性硫普罗宁包覆金纳米粒子可控制备-Monodisperse gold nanoparticles coated with water-based tiopronin controllable preparation
asfds
- 基于天青_纳米金_多壁碳纳米管自组装修饰电极对NADH的催化氧化.-Azure _ _ based on gold nanoparticles self-assembled multi-wall carbon nanotube modified electrode for catalytic oxidation of NADH.
Mie
- 利用Mie理论全面的计算了纳米粒子的吸收散射-Mie theory calculation of the absorption scattering of the nanoparticles
axspartcl.rar
- determines the scattering properties of single gold nanoparticles of different shapes ,determines the scattering properties of single gold nanoparticles of different shapes
2sphere2D
- 基于时域有限差分法(FDTD),用MATLAB编程计算双球金纳米颗粒的局域电磁场增强(二维)的程序||2sphere2D.m-Base on FDTD ,local field enhancement of gold double sphere nanoparticles(2D)by Matlab || 2sphere2D.m
DDA_SI_toolbox
- 计算纳米粒子结构在介质界面上散射情况,包括远场散射系数,吸收系数,消光系数等。代码为matlab编写。-Structure of the nanoparticles in the calculation of interface scattering medium, including far-field scattering coefficients, absorption coefficients, extinction coefficient. Matlab code for writin
Charged-Sphere
- Absorption and Scattering efficiencies of a charged dielectric nanoparticle. The solution is based on Mie theory - The scattering coefficients are calculated. Then the absorption, scattering and extinction cross-sections are derived. All these para