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One-dimensional nonparaxial bright solitons and their coherent interactions in Kerr media

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【作者】 王红成朱德海凌东雄

【Author】 Wang Hong-Cheng~+,Zhu De-Hai,and Ling Dong-Xiong College of Electronic Engineering,Dongguan University of Technology,Dongguan 523808,China

【机构】 College of Electronic Engineering,Dongguan University of Technology

【摘要】 <正>The existence of one-dimensional bright Kerr solitons is investigated in Kerr media beyond the paraxial approximation. It is found that a nonparaxial soliton with no less than a minimum dimensionless width of about 0.76 can exist, which corresponds to the real width about a wavelength.Besides,the coherent interactions between two nonparaxial bright solitons in Kerr media are also investigated in detail.It is found that their separation and intensity ratio have great influence on the coherent interaction between these two solitons.Furthermore,the effect of the relative phase difference on the nonparaxial interaction is quite different from that on the paraxial interaction.Periodical breath, merging,repulsion,and energy transferring can be realized separately by choosing an appropriate initial relative phase between the coherent solitons.

【Abstract】 The existence of one-dimensional bright Kerr solitons is investigated in Kerr media beyond the paraxial approximation. It is found that a nonparaxial soliton with no less than a minimum dimensionless width of about 0.76 can exist, which corresponds to the real width about a wavelength.Besides,the coherent interactions between two nonparaxial bright solitons in Kerr media are also investigated in detail.It is found that their separation and intensity ratio have great influence on the coherent interaction between these two solitons.Furthermore,the effect of the relative phase difference on the nonparaxial interaction is quite different from that on the paraxial interaction.Periodical breath, merging,repulsion,and energy transferring can be realized separately by choosing an appropriate initial relative phase between the coherent solitons.

【基金】 Project supported by the Dongguan Science and Technology Program,Guangdong Province,China(Grant No.200910814038)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2010年08期
  • 【分类号】O437
  • 【下载频次】10
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