首页> 外文期刊>Mathematical Problems in Engineering: Theory, Methods and Applications >The Hybrid Finite Difference and Moving Boundary Methods for Solving a Linear Damped Nonlinear Schr?dinger Equation to Model Rogue Waves and Breathers in Plasma Physics
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The Hybrid Finite Difference and Moving Boundary Methods for Solving a Linear Damped Nonlinear Schr?dinger Equation to Model Rogue Waves and Breathers in Plasma Physics

机译:用于求解线性阻尼非线性SCHR的混合有限差异和移动边界方法,以模型流氓波和血浆物理中的呼吸

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In this paper, the dissipative and nondissipative modulated pulses such as rogue waves (RWs) and breathers (Kuznetsov-Ma breathers and Akhmediev breathers) that can exist and propagate in several fields of sciences, for example, plasma physics, have been analyzed numerically. For this purpose, the fluid dusty plasma equations with taking the kinematic dust viscosity into account are reduced to the linear damped nonlinear Schr?dinger equation using a reductive perturbation technique. It is known that this equation is not integrable and, accordingly, does not have analytical solution. Thus, for modelling both dissipative RWs and breathers, the improved finite difference method is introduced for this purpose. It is found that FDM is a good numerical technique for small time interval but for large time interval it becomes sometimes unacceptable. Therefore, to describe these waves accurately, the new improved numerical method is considered, which is called the hybrid finite difference method and moving boundary method (FDM-MBM). This last and updated method gives an accurate and excellent description to many physical results, as it was applied to the dust plasma results and the results were good.
机译:在本文中,在数值上分析了可以存在和传播的耗散和不良调制脉冲,例如流氓波(RWS)和呼吸器(Kuznetsov-ma呼吸和Akhmediev呼吸器),例如,可以在几个科学领域中存在和繁殖,例如等离子体物理。为此目的,使用还原性扰动技术将具有运动粉尘粘度的流体粉尘等离子体方程被降低到线性阻尼非线性SCHRα达格方程。众所周知,该等式不可取,因此没有分析解决方案。因此,为了为此目的,引入了改进的有限差分方法。发现FDM是一个良好的数值技术,用于小的时间间隔,但对于大的时间间隔,它变得有时是不可接受的。因此,为了准确描述这些波,考虑了新的改进的数值方法,称为混合有限差分方法和移动边界方法(FDM-MBM)。最后和更新的方法给出了许多物理结果的准确性和优异的描述,因为它适用于灰尘等离子体结果,结果良好。

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