Study of cylindrical and spherical dust acoustic solitons and quasiperiodic structures in a quantum dusty plasma

IF 1.3 Q3 ORTHOPEDICS
E. Emadi, H. Zahed
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引用次数: 0

Abstract

The solitonic and quasiperiodic structures of dust acoustic (DA) waves are investigated in a three components quantum dusty plasma composed of mobile negative dust grains, ions, and inertialess electrons. The reductive perturbation method is employed to derive A deformed Korteweg–de Vries (dKdV) equation in planar and nonplanar geometries, and its numerical solutions are obtained using the two level finite difference approximation method. The influence of geometries on DA solitons is discussed. It is observed that in nonplanar geometries, DA solitons travel at different speeds in comparison to one-dimensional planar ones. Furthermore, in the planar geometry, the bifurcation of DA traveling waves has been analyzed on the framework of the dKdV equation. By adding an external periodic force to the derived dKdV equation, the quasiperiodic behaviors of DA waves are presented.
量子尘埃等离子体中圆柱形和球形尘埃声孤子及准周期结构的研究
在由可移动负尘埃粒子、离子和无惯性电子组成的三组分量子尘埃等离子体中,研究了尘埃声波的孤立子和准周期结构。采用约化摄动方法导出了平面和非平面几何中的变形Korteweg–de Vries(dKdV)方程,并用两级有限差分近似方法获得了其数值解。讨论了几何结构对DA孤子的影响。观察到,在非平面几何中,DA孤子与一维平面孤子相比以不同的速度传播。此外,在平面几何中,在dKdV方程的框架上分析了DA行波的分岔。通过在导出的dKdV方程中加入外周期力,给出了DA波的准周期行为。
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来源期刊
Plasma Research Express
Plasma Research Express Energy-Nuclear Energy and Engineering
CiteScore
2.60
自引率
0.00%
发文量
15
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