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Description: Photonic crystal fiber section area Graph
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Size: 57344 |
Author: huajun |
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Description: 光纤中纤芯基模的有效折射率计算程序,二分法求解!-fiber core base mode of the effective refractive index calculation procedures for dichotomy!
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Size: 1024 |
Author: 张文 |
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Description: 本软件使用matlab预言编写,用于分析光子晶体光纤空气孔直径,孔间距,等参数对光子晶体光纤单模特性的影响。-Matlab predicted the use of this software to prepare for the analysis of photonic crystal fiber air hole diameter, hole spacing, and other parameters on the photonic crystal fiber single-mode characteristics.
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Size: 17408 |
Author: 王文 |
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Description: 利用FDTD方法模拟普通光子晶体光纤中模场变化的情况,为主程序,可以为学习FDTD模拟PCF的学习者提供一定参考和学习。-Ordinary FDTD simulation using photonic crystal fiber mode field changes in the situation, the main program, you can learn from FDTD simulation for the PCF to provide a reference of learners and learning.
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Size: 7168 |
Author: lyang |
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Description: 利用FDTD模拟光子晶体光纤中的色散的程序,是在wang.m程序基础上改进之后计算色散的。-FDTD simulation of photonic crystal fiber used in the dispersion of the procedure is based on the improvements in the program after wang.m calculated dispersion.
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Size: 7168 |
Author: lyang |
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Description: Susan_C_Hagness编写的FDTD模拟光子晶体光纤的原始程序,初学matlab编写FDTD的必看。-Susan_C_Hagness prepared by the FDTD simulation of photonic crystal fiber original program, written FDTD matlab beginner' s must-see.
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Size: 4096 |
Author: lyang |
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Description: Analysis of propagation characteristics for an
octagonal photonic crystal fiber (O-PCF)
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Size: 539648 |
Author: ali |
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Description: 本程序是MATLAB用编写程序计算光子晶体光纤色散问题 准确,逼真-simulate pcf dispersion
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Size: 691200 |
Author: 邹辉 |
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Description: 用分布傅里叶方法计算和分析光子晶体光纤中的超连续谱的产生和传输特性.-Fourier method with the distribution and analysis of photonic crystal fiber supercontinuum in the generation and transmission characteristics.
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Size: 13312 |
Author: Ming |
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Description: 本代码可不用借助其他工具直接对光子晶体光纤的色散等直接计算,对学习pcf的朋友很有帮助!-This code can be without the help of other tools directly on the photonic crystal fiber dispersion and other direct calculation, learning pcf helpful friends!
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Size: 1024 |
Author: xiao li |
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Description: 基于有限元光子晶体光纤的模场与色散分析, 对利用有限元法进行光子晶体光纤研究的朋友很有帮助!-Based on finite element photonic crystal fiber mode field and dispersion analysis, using the finite element method photonic crystal fiber helpful friends!
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Size: 276480 |
Author: xiao li |
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Description: 模拟通过一个高度非线性光子晶体光纤(PCF)传播的kW峰值功率孤子脉冲。-These scripts simulate femto-second soliton pulses, with kWs of peak power, propagating through a highly non-linear Photonic Crystal Fiber (PCF).
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Size: 14336 |
Author: lulu |
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Description: 计算光子晶体光纤的有效折射率程序,可以得到有效折射率随波长变化图-Calculate the effective refractive index of the photonic crystal fiber program, you can get change in the effective refractive index with wavelength
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Size: 1024 |
Author: |
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Description: 用matlab绘制光子晶体光纤的程序,可以绘制出六边形光子晶体光纤及其参数的设定-Draw photonic crystal fibers using matlab program, you can draw a set of hexagonal photonic crystal fiber and its parameters
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Size: 1024 |
Author: |
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Description: simulate photonic crystal fiber cross section based on matlabe
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Size: 55296 |
Author: nashwan |
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Description: photonic crystal fiber (PCF) made of silicon is proposed and numerically
optimized with both ultrahigh birefringence and nonlinearity. By introducing an elliptical lowindex
slot in the core region, one of the orthogonally polarized fundamental modes can be
confined in the low-index region due to the discontinuity of its electric field at the interface of
the slot and the surrounding material, while the other fundamental mode is dominated by the
modified total internal reflection (MTIR) induced by air holes of the cladding, leading to a
birefringence as high as 101 order. On the other hand, benefiting the tight field
confinement and highly nonlinear material, nonlinear coefficients up to 1068 W1 m1 and
162 W1 m1 can be achieved for the slot mode and the MTIR mode, respectively.-photonic crystal fiber (PCF) made of silicon is proposed and numerically
optimized with both ultrahigh birefringence and nonlinearity. By introducing an elliptical lowindex
slot in the core region, one of the orthogonally polarized fundamental modes can be
confined in the low-index region due to the discontinuity of its electric field at the interface of
the slot and the surrounding material, while the other fundamental mode is dominated by the
modified total internal reflection (MTIR) induced by air holes of the cladding, leading to a
birefringence as high as 101 order. On the other hand, benefiting the tight field
confinement and highly nonlinear material, nonlinear coefficients up to 1068 W1 m1 and
162 W1 m1 can be achieved for the slot mode and the MTIR mode, respectively.
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Size: 11285504 |
Author: jack |
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Description: In contrast with conventional optical fibers, photonic crystal fibers (PCF) present a diversity of new
and improved features, which provide several new applications such as nonlinear fiber optics, fiber
lasers, supercontinuum generation, and fiber sensors. In many applications of all-optical signal
processing, optical fibers with both high birefringence and high nonlinearity are desired, because
many nonlinear effects in optical fiber are polarization-sensitive, and maintaining the state of
polarization (SOP) is essential for good performance. In particular, with enhanced nonlinearity, both
the footprint and power-consumption of optical device can be reduced. By carefully arranging the air
holes of PCF, high birefringence in excess of 103 can be readily achieved
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Size: 655360 |
Author: jack |
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