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首页> 外文期刊>Journal of the Optical Society of America, B. Optical Physics >Formation and interaction characteristics of two-component spatial weak-light soliton in a four-level double-Lambda type system
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Formation and interaction characteristics of two-component spatial weak-light soliton in a four-level double-Lambda type system

机译:四能级双Lambda型系统中两组分空间弱光孤子的形成和相互作用特征

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摘要

By using the multiple-scale method, we study analytically the formation and stability of two-component spatial optical solitons in a cold, lifetime-broadened resonant four-level double-Lambda type atomic system via electromagnetically induced transparency. It is shown that stable two-component (1 + 1) dimension spatial optical solitons with extremely weak light intensity can occur, which is different from the passive ones with photorefractive and planar waveguides. Furthermore, the interaction characteristics between two solitons are studied by numerical simulations. We find that the collisional dynamics and the energy transfer of the two solitons are closely correlated with their relative phase shift. Our results may provide a good idea to obtain useful spatial optical solitons for application in optical soliton communications. (C) 2010 Optical Society of America
机译:通过使用多尺度方法,我们通过电磁感应的透明性,分析了冷的,寿命延长的共振四能级双Lambda型原子系统中两组分空间光学孤子的形成和稳定性。结果表明,可以产生具有极弱光强度的稳定的两分量(1 +1)维空间光孤子,这与具有光折射和平面波导的无源孤子不同。此外,通过数值模拟研究了两个孤子之间的相互作用特性。我们发现,两个孤子的碰撞动力学和能量传递与其相对相移密切相关。我们的结果可能为获得有用的空间光孤子用于光孤子通信提供一个好主意。 (C)2010年美国眼镜学会

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