首页> 外文期刊>The European physical journal, B. Condensed matter physics >Modulational instability and peak solitary wave in a discrete nonlinear electrical transmission line described by the modified extended nonlinear Schrodinger equation
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Modulational instability and peak solitary wave in a discrete nonlinear electrical transmission line described by the modified extended nonlinear Schrodinger equation

机译:修改延伸非线性施罗德格方程描述的离散非线性电传输线中的调制不稳定和峰孤波

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The present work describes the propagation of plane and peak solitary waves in a modified extended nonlinear Schrodinger (MENLS) equation that was earlier shown to govern the dynamics of modulated waves in a discrete nonlinear electrical transmission line (DNLETL). Firstly, the analytic expression for the modulational instability gain is found and the influence of wavenumber and wave amplitude on the gain is derived. It is predicted that they can be used to control the occurrence of modulation instability phenomenon in the network. Afterwards, using the MENLS equation, we show that this model of nonlinear electrical transmission line admits peak solitary wave for physically realistic parameters of the system. Direct numerical simulations are performed on the exact equations of the lattice and the obtained results are in very good agreement with the analytical predictions.
机译:本作者描述了在更早地示出的修改的延伸的非线性Schrodinger(MENL)方程中的平面和峰值孤立的传播,所述平面和峰值孤立在离散的非线性电传输线(DNLETL)中的调制波的动态来控制。 首先,发现了调制不稳定增益的分析表达,导出了波数和波浪幅度对增益的影响。 预测,它们可用于控制网络中调制稳定性现象的发生。 之后,使用Menls方程,我们表明,这种非线性电传输线模型承认了用于系统的物理上现实参数的峰孤立。 对晶格的确切方程进行直接数值模拟,并且获得的结果与分析预测非常好。

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