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含电阻中心对称光折变非相干耦合空间孤子对

吉选芒, 姜其畅, 刘劲松

吉选芒, 姜其畅, 刘劲松. 含电阻中心对称光折变非相干耦合空间孤子对[J]. 激光技术, 2011, 35(1): 70-73. DOI: 10.3969/j.issn.1001-3806.2011.01.020
引用本文: 吉选芒, 姜其畅, 刘劲松. 含电阻中心对称光折变非相干耦合空间孤子对[J]. 激光技术, 2011, 35(1): 70-73. DOI: 10.3969/j.issn.1001-3806.2011.01.020
JI Xuan-mang, JIANG Qi-chang, LIU Jin-song. Incoherently coupled spatial soliton pairs in biased centrosymmetric photorefractive media with a resistance[J]. LASER TECHNOLOGY, 2011, 35(1): 70-73. DOI: 10.3969/j.issn.1001-3806.2011.01.020
Citation: JI Xuan-mang, JIANG Qi-chang, LIU Jin-song. Incoherently coupled spatial soliton pairs in biased centrosymmetric photorefractive media with a resistance[J]. LASER TECHNOLOGY, 2011, 35(1): 70-73. DOI: 10.3969/j.issn.1001-3806.2011.01.020

含电阻中心对称光折变非相干耦合空间孤子对

基金项目: 

山西省高等学校科技开发基金资助项目(200611042)

详细信息
    作者简介:

    吉选芒(1965-),男,工学硕士,教授,从事物理教学与光折变非线性光学方面的研究工作 E-mail:jixuanmang@126.com

  • 中图分类号: O437

Incoherently coupled spatial soliton pairs in biased centrosymmetric photorefractive media with a resistance

  • 摘要: 为了得到含分压电阻的中心对称光折变非相干耦合空间孤子对的结果,采用数值模拟方法对这种孤子对的特性进行了理论分析。结果表明,这种孤子对是由两束偏振方向和波长都相同的互不相干光束耦合形成的。当分压电阻取不同值时,可分别得到有、无分压电阻的非相干耦合屏蔽孤子对。预言了亮-亮,暗-暗和亮-暗非相干耦合空间孤子对可存在于中心对称光折变介质中。
    Abstract: In order to obtain results of incoherently coupled spatial soliton pairs in biased centrosymmetric photorefractive crystal circuit with a divider resistance, the characteristics of these soliton pairs were numerically investigated. The result shows that these soliton pairs are established by the mutually incoherent solitary beams with the same polarization and wavelength. The incoherently coupled screening spatial soliton pairs in biased centrosymmetric photorefractive crystal with a divider resistance or not can be obtained from this theory by adjusting the value of the divider resistance. Incoherently coupled dark-dark, bright-bright and bright-dark screening soliton pairs in centrosymmetric photorefractive crystals are possible due to photorefractive effect.
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出版历程
  • 收稿日期:  2010-01-31
  • 修回日期:  2010-03-30
  • 发布日期:  2011-01-24

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