Advanced Search

ISSN1001-3806 CN51-1125/TN Map

Volume 29 Issue 2
Sep.  2013
Article Contents
Turn off MathJax

Citation:

Theoretical and experimental analysis of wavelength conversion based on semiconductor laser

  • Corresponding author: REN Jian-hua, R_JH2000@sohu.com
  • Received Date: 2004-03-03
    Accepted Date: 2004-06-23
  • As the key apparatus in ASON(automatic switched optical networks),all optical wavelength conversion device plays a very important role.A theoretical model of wavelength conversion based on semiconductor laser is established.Using rate equation,the characteristics of wavelength conversion are analyzed based on numerical solution of theoretical model.A set of experimental equipment using fiber Bragg grating external cavity semiconductor laser foral loptical wavelength conversion are accomplished by ourselves,experimental result are discussed synchronously.The result of experiment is accordant with theoretical analysis.Research indicates that it is applied key to reduce photon life and optimize the structure of external cavity in future intelligent optical network.
  • 加载中
  • [1]

    YOO S J B.Wavelength conversion technologies for WDM network applications[J].IEEE J Lightwave Technol,1996,14(6):955~966.
    [2]

    JOERGENSEN C,DANIELSEN S,STUBKJAER K et al.All-optical wavelength conversion at bit rates above 10Gbit/s using semiconductor optical amplifier[J].IEEE J Select Topics in Quantum Electron,1997,3(5):1168~1179.
    [3]

    DURHUUS T,JOERGENSEN C,MIKKELSEN B et al.All opticalwavelength conversion by SOA's in Mach-Zehnder configuration[J].IEEE Photon Technol Lett,1994,6(1):53~55.
    [4]

    YATES J M,LACEY J P R,RUMSEWICZ M P et al.Performance of networks using wavelength converters based on four-wave mixing in semiconductor optical amplifiers[J].IEEE J Lightwave Technol,1999,17(5):782~791.
    [5]

    WANG D,GOLOVCHENKO E A,PILIPETSKII A N et al.Nonlinear optical loop mirror based on standard communication fiber[J].IEEE J Lightwave Technol,1997,15(4):642~646.
    [6] 陈高庭,瞿荣辉,赵浩 et al.光纤光栅外腔分布布喇格反射激光器中的波长转换[J].光学学报,1998,18(3):257~261.

    [7] 陈长勇,乔学光,贾振安 et al.一种新颖的光纤光栅应变与温度双参量传感器[J].光电子·激光,2003,14(8):787~790.

    [8]

    AGRAWAL G P.Gain nonlinearities in semiconductor lasers:theory and application to distributed feedback lasers[J].IEEE J Q E,1987,QE23(6):860~868.
    [9] 赵同刚,任建华,李蔚 et al.半导体激光器实现波长转换的理论模拟分析[J].光学学报,2003,23(9):1071~1075.

    [10]

    MCCALL M.On the application of coupled mode theory for modeling fiber Bragg gratings[J].Journal of Lightwave Technology,2000,18(2):236~242.
    [11] 夏光琼,吴正茂,陈建国.光纤光栅的长度对其峰值反射率的影响[J].激光技术,2002,26(2):106~107.

    [12]

    KAKIUCHIDA H,OHTSUBO J.Characteristics of a semiconductor laser with external feedback[J].IEEE J Q E,1994,QE30(9):2087~2097.
  • 加载中
通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索

Article views(2989) PDF downloads(304) Cited by()

Proportional views

Theoretical and experimental analysis of wavelength conversion based on semiconductor laser

    Corresponding author: REN Jian-hua, R_JH2000@sohu.com
  • 1. BUPT-Anritsu Research Center of Optic-electronic Inspection, Beijing University of Posts and Telecommunications, Beijing 100876, China;
  • 2. Department of Physics, Liaoning University, Shenyang 110036, China

Abstract: As the key apparatus in ASON(automatic switched optical networks),all optical wavelength conversion device plays a very important role.A theoretical model of wavelength conversion based on semiconductor laser is established.Using rate equation,the characteristics of wavelength conversion are analyzed based on numerical solution of theoretical model.A set of experimental equipment using fiber Bragg grating external cavity semiconductor laser foral loptical wavelength conversion are accomplished by ourselves,experimental result are discussed synchronously.The result of experiment is accordant with theoretical analysis.Research indicates that it is applied key to reduce photon life and optimize the structure of external cavity in future intelligent optical network.

Reference (12)

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return