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这个Matlab的m代码解决了薛定谔方程,沿着带宽频率和相位偏移,显示三维图像。-The Matlab m-code to solve the Schrodinger equation along the bandwidth of the frequency and phase offset, showing three-dimensional image.
Update : 2025-03-07 Size : 50kb Publisher : 雷锋

计算光纤模场分布和传播常数,输入模式的阶数,计算得到各类模式的模场分布。直接运行main,在其中修改参数,至少可以计算5层光纤结构。-Calculation of optical mode field distribution and propagation constant, the order input mode, calculated by various types of mode-mode field distribution. Direct run main, in which the modified parameters can be calculated for at least 5 layer fiber structure.
Update : 2025-03-07 Size : 1.88mb Publisher : 郭海润

开发的结合用C语言与matlab计算阶跃光纤中的模场分布、传播常数与功率分布情况。-The combination of development with C language and matlab calculation step in the fiber mode field distribution, propagation constant and power distribution.
Update : 2025-03-07 Size : 3.94mb Publisher : nbshao

利用分步傅立叶积分法,求解薛定谔方程,可以计算光纤中色散与SPM-This file solves the nonlinear Schrodinger equation for propagation in an optical fiber using the split-step Fourier method described
Update : 2025-03-07 Size : 2kb Publisher : 陈东

利用牛顿法数值计算光纤的传播常数,这样利用传播常数与色散的关系,就可以画出光纤的色散曲线-Numerical calculation using Newton' s method the fiber propagation constant, so that the use of the propagation constant and the dispersion relations, we can draw the dispersion curves of optical fiber
Update : 2025-03-07 Size : 1kb Publisher : lu zhangxian

拉曼光谱函数。用于计算光纤通信中脉冲传输的非线性薛定谔方程。该函数函数可以在matlab环境下调用。-Raman spectroscopy function. Used to calculate the pulse propagation in optical fiber communications in nonlinear Schr?dinger equation. The function function call in the matlab environment.
Update : 2025-03-07 Size : 2kb Publisher : 赵传领

DL : 0
利用分步傅立叶积分法,求解薛定谔方程,可以计算光纤中色散与自相位调制效应-This file solves the nonlinear Schrodinger equation for propagation in an optical fiber using the split-step Fourier method described.
Update : 2025-03-07 Size : 2kb Publisher : alfanso

DL : 0
Analysis of propagation characteristics for an octagonal photonic crystal fiber (O-PCF)
Update : 2025-03-07 Size : 527kb Publisher : ali

DL : 0
a matlab program used for estimating the numerical aperture, propagation constant of optical fiber communication
Update : 2025-03-07 Size : 7kb Publisher : anand

频率失谐对掺镱光纤放大器中光脉冲传输特性的影响.-Frequency detuning of the ytterbium-doped fiber amplifiers in optical pulse propagation properties.
Update : 2025-03-07 Size : 632kb Publisher : courage

光子晶体光纤中双脉冲非线性传输的数值分析.-Double pulse in photonic crystal fiber numerical analysis of nonlinear propagation.
Update : 2025-03-07 Size : 472kb Publisher : hh

利用matlab软件计算一种平面波导TE0,TM0模式和光纤基模的传播常数。-Using matlab software to calculate the propagation constant of a planar waveguide TE0, the TM0 is scaled mode and fiber-based mode.
Update : 2025-03-07 Size : 1kb Publisher : 许昌

国外光子晶体光纤的非线性模拟博论,挺不错的-this dissertation is numerical modeling of wave propagation in nonlinear photonic crystal fiber
Update : 2025-03-07 Size : 1.69mb Publisher : shenxiang

详细介绍在光纤激光中的传播常数的相关研究的matlab计算-Details the calculation of the propagation constant in the fiber laser Matlab
Update : 2025-03-07 Size : 3.68mb Publisher : 高翔

DL : 0
this program is about pulse propagation in fiber
Update : 2025-03-07 Size : 2kb Publisher : rad

Gaussian Impulse propagation in a optical fiber with a determined chirp value normalized.
Update : 2025-03-07 Size : 3kb Publisher : neftis

对光纤中光的传播特性进行仿真(包括单模和多模光纤)-Simulation of optical propagation characteristics in optical fibers (including single-mode and multimode fiber)
Update : 2025-03-07 Size : 18kb Publisher : xujin

DL : 0
再多模光纤中,光纤传播的模式很多,不同的VUW对应不同的模式,根据特征方程可以仿真出每一个模式的二维强度图。(In multimode fiber, there are many modes of fiber propagation, and different VUW corresponds to different modes. According to the characteristic equation, the two-dimensional intensity map of each mode can be simulated.)
Update : 2025-03-07 Size : 3kb Publisher : 茚莳

OCM code solved for ocm
Update : 2025-03-07 Size : 341kb Publisher : zaghlouleh

Since the publication of the first edition of this book in 1989, the field of nonlinear fiber optics has virtually exploded. A major factor behind such a tremendous growth was the advent of fiber amplifiers, made by doping silica or fluoride fibers with rare-earth ions such as erbium and neodymium. Such amplifiers revolutionized the design of fiber-optic communication systems, including those making use of optical solitons whose very existence stems from the presence of nonlinear effects in optical fibers. Optical amplifiers permit propagation of lightwave signals over thousands of kilometers as they can compensate for all losses encountered by the signal in the optical domain. At the same time, fiber amplifiers enable the use of massive wavelength-division multiplexing (WDM) and have led to the development of lightwave systems with capacities exceeding 1 Tb/s.
Update : 2025-03-07 Size : 2.75mb Publisher : 杰泽
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