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Interaction dynamics of Bragg grating solitons in a semilinear dual-core system with dispersive reflectivity

机译:具有分散反射率的半线性双核系统中布拉格光栅孤子的相互作用动力学

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The interactions of quiescent Bragg grating (BG) solitons in a semilinear dual-core system, where one core is nonlinear and is equipped with a BG with dispersive reflectivity and the other core is linear are investigated. It has been previously shown that the model supports stable quiescent solitons which may or may not have sidelobes in their profiles. The interaction of in-phase solitons can lead to various outcomes such as generation of two moving solitons with equal or unequal velocities, merger of solitons into a quiescent one, generation of three solitons (one quiescent and two moving ones) and destruction of solitons. The presence of sidelobes can radically change the interaction dynamics, e.g. in-phase solitons can repel or form a temporary bound state which subsequently splits into two separating solitons. We have identified the outcome regions for in-phase interactions through systematic numerical simulations in the plane of dispersive reflectivity vs. frequency. We have also analysed the effect of initial separation on the outcomes of interactions. It is found that when sidelobes are present in solitons' profiles, the outcomes of the interactions are strongly dependent on the initial separation.
机译:研究了一个半线性双核系统中的静态布拉格光栅(BG)孤子的相互作用,该系统的一个核是非线性的,并且配备了具有色散反射率的BG,而另一个核是线性的。先前已经表明,该模型支持稳定的静态孤子,这些孤子的轮廓可能具有也可能没有旁瓣。同相孤子的相互作用会导致各种结果,例如生成两个速度相等或不相等的移动孤子,将孤子合并成静态孤子,生成三个孤子(一个静止和两个动子)以及破坏孤子。旁瓣的存在可以从根本上改变相互作用的动力学,例如同相孤子可以排斥或形成临时束缚状态,随后分裂为两个分离的孤子。我们通过色散反射率与频率平面中的系统数值模拟,确定了同相相互作用的结果区域。我们还分析了初始分离对相互作用结果的影响。发现当旁瓣出现在孤子的轮廓中时,相互作用的结果在很大程度上取决于初始分离。

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