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拉曼效应和参量放大共同作用下增益谱特性
引用本文:贾维国,乔丽荣,王旭颖,门克内木乐,杨军,张俊萍. 拉曼效应和参量放大共同作用下增益谱特性[J]. 物理学报, 2012, 61(19): 194209-194209
作者姓名:贾维国  乔丽荣  王旭颖  门克内木乐  杨军  张俊萍
作者单位:1. 内蒙古大学物理科学与技术学院,呼和浩特,010021
2. 内蒙古广播电视大学,呼和浩特,010010
基金项目:国家自然科学基金(批准号: 61167004)和内蒙古自然科学基金(批准号: 2010MS0102)资助的课题.
摘    要:根据激光脉冲在双折射光纤中传输时, 拉曼效应和参量放大共同作用下所所遵循的耦合模方程, 基于平行拉曼增益的洛伦兹模型, 给出了输入抽运波偏振方向沿相互正交的双折射轴时, 拉曼效应和参量放大共同作用所导致的增益. 讨论并分析了在不同色散区相关参量对增益谱特性的影响. 结果表明, 拉曼效应改变了非线性和色散的相互平衡, 使得参量放大斯托克斯波与反斯托克斯波增益谱彼此不对称; 当输入功率一定时, 其增益谱结构确定, 非线性系数和色散系数两者之间相对变化时, 增益谱的强度和展宽有所改变.

关 键 词:拉曼效应  参量放大  增益谱  双折射光纤
收稿时间:2012-01-07

The gain spectrum character under Raman scattering and parametric amplification
Jia Wei-Guo,Qiao Li-Rong,Wang Xu-Ying,Ke Neimule,Yang Jun,Zhang Jun-Ping. The gain spectrum character under Raman scattering and parametric amplification[J]. Acta Physica Sinica, 2012, 61(19): 194209-194209
Authors:Jia Wei-Guo  Qiao Li-Rong  Wang Xu-Ying  Ke Neimule  Yang Jun  Zhang Jun-Ping
Affiliation:1. School of Physical Science and Technology, Inner Mongolia University, Hohhot 010021, China;2. Inner Mongolia Radio & TV University, Hohhot 010010, China
Abstract:According to the nonlinear coupled equation under the joint action of Raman scattering and parametric amplification when the optical pulse propagats in the birefringent fiber, based on Lorentzian model of parallel Raman gain spectrum, the gain spectrum is obtained by combining Raman scattering and parametric amplification when the pump wave polarization direction is along the two orthogonal birefringence axes. The gain spectrum is discussed as a function of input parameters (input power, the group velocity mismatch) in different dispersion regimes. The result shows that the balance between non-linearity and dispersion is destructed by Raman scattering. Stokes and anti-stokes gain spectrum are asymmetric because of Raman effect. The structure of gain spectrum is confirmed when input power is constant. The intensity and width of gain spectrum change with dispersion and nonlinear parameter.
Keywords:Raman effect  parametric amplification  gain spectrum  birefringent fiber
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