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温度对中心对称光折变稳态暗孤子演化的影响
引用本文:吉选芒,姚纪欢,刘劲松.温度对中心对称光折变稳态暗孤子演化的影响[J].量子光学学报,2012,18(1):70-74.
作者姓名:吉选芒  姚纪欢  刘劲松
作者单位:1. 山西运城学院物理与电子工程系,山西运城,044000
2. 华中科技大学光电子科学与工程学院,湖北武汉,430074
摘    要:为了得到温度对中心对称光折变晶体中空间暗孤子影响的结果,数值研究了中心对称光折变暗孤子动态演化的温度特性。结果表明,孤子强度包络演化强烈地依赖于晶体的温度和介电常数的温度特性。在290-320K的温度变化范围内,暗孤子的宽度随温度的增加而变大,孤子的峰值强度随温度的增加而变小。在300K的温度下,中心对称光折变介质中可以形成稳定的暗空间孤子,当温度从300K升高或降低时,孤子将克服较小的扰动而保持稳定的传播。通过调整温度可以改变孤子的空间形态。

关 键 词:非线性光学  光折变效应  中心对称光折变材料  空间孤子  温度特性
收稿时间:2011/4/30

Effects of the Temperature on the Evolution of Steady-state Dark Solitons in Biased Centrosymmetric Photorefractive Crystals
JI Xuan-mang , YAO Ji-huan , LIU Jin-song.Effects of the Temperature on the Evolution of Steady-state Dark Solitons in Biased Centrosymmetric Photorefractive Crystals[J].Acta Sinica Quantum Optica,2012,18(1):70-74.
Authors:JI Xuan-mang  YAO Ji-huan  LIU Jin-song
Institution:1.Department of Physics and Electronic Engineering,Yuncheng University,Yuncheng,044000,China;2.College of Optoelectronic Science and Engineering,Huazhong University of Science and Technology,WuHan 430074,China)
Abstract:In order to obtain the effects of the temperature on steady-state dark spatial solitons in biased centrosymmetric photorefractive crystals, the temperature dependence of evolution of steady-state dark spatial solitons in biased centrosymmetric photorefractive crystals are numerically intestigated.It is shown that intensity profiles of solitons strongly depend on the crystal temperature and the dielectric constant temperature dependence dominates the process.Under the range of 290-320 K, the soliton normalized peak intensity drops rapidly over a narrow range of temperature and soliton width increases as temperature rises. a stable dark spatial solitons can be formed in a crystal at a given temperature of 300K. When the temperature of crystals increases or decreases from 300 K, the stability of solitons can be persisted by overcoming the less disturbance. The spatial shape of a stable solitons can be inflected by appropriately adjusting the crystal temperature.
Keywords:nonlinear optics  photorefractive effect  centrosymmetric photorefractive material  spatial solitons  temperature dependence
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