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Abnormal single or composite dissipative solitons generation

机译:单耗散或复合耗散孤子生成异常

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The evolution dynamics of the initial finite energy Airy pulses and Airy pulse pairs are numerically investigated in the cubic-quintic complex Ginzberg-Laudau equation governed dissipative system. Depending on different initial excitations and system parameters, abnormal double, triple, and quadruple composite dissipative solitons as well as single dissipative solitons can be observed. The composite dissipative solitons may consist of identical or different types of pulsating solitons. Moreover, the creeping solitons and the single ordinary pulsating solitons can even appear in the parameter regions where originally the other types of pulsating solitons exist. Besides, before evolving into each abnormal dissipative soliton, the initial finite energy Airy pulse or pulse pairs generally exhibit very interesting and unique early evolution behavior. (C) 2016 Elsevier B.V. All rights reserved.
机译:在立方五次复数Ginzberg-Laudau方程控制的耗散系统中,对初始有限能量Airy脉冲和Airy脉冲对的演化动力学进行了数值研究。根据不同的初始激励和系统参数,可以观察到异常的双,三和四重复合耗散孤子以及单耗散孤子。复合耗散孤子可以由相同或不同类型的脉动孤子组成。而且,蠕变孤子和单个普通脉动孤子甚至可以出现在最初存在其他类型的脉动孤子的参数区域中。此外,在演化为每个异常耗散孤子之前,初始有限能量艾里脉冲或脉冲对通常表现出非常有趣且独特的早期演化行为。 (C)2016 Elsevier B.V.保留所有权利。

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