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色散管理光孤子的数学理论

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色散管理光孤子的数学理论

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作 者:(印) 比斯瓦斯 (Biswas.A.)

出 版 社:高等教育出版社

出版时间:2010-1-1

I S B N:9787040182927

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《色散管理光孤子的数学理论》是由高等教育出版社出版的。

内容简介

the book is intended for researchers and graduate students in applied mathematics, physics and engineering and also it will be of interest to those who are conducting research in nonlinear fiber optics.

作者简介

作者:(印度)比斯瓦斯(Biswas,A.) (塞尔维亚)米洛维克(Milovec,D.) (美国)马修(Matthew,E.) 丛书主编:罗朝俊 (瑞典)伊布拉基莫夫

Dr. Anjan Biswas is an Associate Professor at the Department of Applied Mathematics & Theoretical Physics, Delaware State University, Dover, DE, USA. Dr. Daniela Milovic is an Associate Professor at the Department of Telecommunications, Faculty of Electronic Engineering, University of Nis, Serbia. Dr. Matthew Edwards is the Dean of the School of Arts and Sciences at Alabama A & M University in Huntsville, AL, USA.

目录

1 introduction
references
2 nonlinear schrodinger's equation
 2.1 derivation of nlse
  2.1.1 limitations of conventional solitons
  2.1.2 dispersion-management
  2.1.3 mathematical formulation
 2.2 integrals of motion
 2.3 soliton perturbation theory
  2.3.1 perturbation terms
 2.4 variational principle
  2.4.1 perturbation terms
 references
3 polarization preserving fibers
 3.1 introduction
 3.2 integrals of motion
  3.2.1 gaussian pulses
  3.2.2 super-gaussian pulses
  3.2.3 super-sech pulses
3.3 variational principle
  3.3.1 gaussian pulses
  3.3.2 super-gaussian pulses
3.4 perturbation terms
  3.4.1 gaussian pulses
  3.4.2 super-gaussian pulses
3.5 stochastic perturbation
references
4 birefringent fibers
 4.1 introduction
 4.2 integrals of motion
  4.2.1 gaussian pulses
  4.2.2 super-gaussian pulses
 4.3 variational principle
   4.3.1 gaussian pulses
   4.3.2 super-gaussian pulses
 4.4 perturbation terms
   4.4.1 gaussian pulses
   4.4.2 super-gaussian pulses
  references
5 multiple channels
  5.1 introduction
  5.2 integrals of motion
   5.2.1 gaussian pulses
   5.2.2 super-gaussian pulses
  5.3 variational principle
   5.3.1 gaussian pulses
   5.3.2 super-gaussian pulses
  5.4 perturbation terms
   5.4.1 gaussian pulses
   5.4.2 super-gaussian pulses
  references
6 optical crosstalk
  6.1 in-band crosstalk
  6.2 gaussian optical pulse
   6.2.1 bit error rate
  6.3 sech optical pulse
  6.4 super-sech optical pulse
  references
7 gabitov-turitsyn equation
  7.1 introduction
  7.2 polarization-preserving fibers
   7.2.1 special solutions
  7.3 birefringent fibers
  7.4 dwdm system
  7.5 properties of the kernel
   7.5.1 lossless case
   7.5.2 lossy case
  references
8 quasi-linear pulses
 8.1 introduction
 8.2 polarization-preserving fibers
   8.2.1 lossless system
   8.2.2 lossy system
 8.3 birefringent fibers
   8.3.1 lossless system
   8.3.2 lossy system
 8.4 multiple channels
   8.4.1 lossless system
   8.4.2 lossy system
 references
9 higher order gabitov-turitsyn equations
 9.1 introduction
 9.2 polarization preserving fibers
 9.3 birefringent fibers
 9.4 dwdm systems
 references
index

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