Study of multi-solitons, breather structures in dusty plasma with generalized polarization force

IF 1.5 4区 物理与天体物理 Q3 OPTICS The European Physical Journal D Pub Date : 2024-07-06 DOI:10.1140/epjd/s10053-024-00874-y
Snehalata Nasipuri, Prasanta Chatterjee, Uday Narayan Ghosh
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Abstract

A theoretical inquiry delves into the presence of multiple solitons and breather configurations within a nonuniform, inhomogeneous, unmagnetized dusty plasma characterized by universally polarized force. This system encompasses ions, electrons, positively and negatively charged dust particles, distributed in accordance with a superthermal distribution. Employing the reductive perturbation technique (RPT), the Gardner equation (GE) is derived from the fundamental hydrodynamical model equations. The multi-solitons of the GE are synthesized utilizing the Hirota bilinear method (HBM), which further facilitates the exploration of breather solutions via the appropriate selection of complex wave numbers. The system exhibits both compressive and rarefactive multi-solitons. Moreover, the behavior of breather structures varies depending on associated plasma parameters; occasionally, they overlap, while at other times, they remain entirely disjoint. This research holds relevance for investigating the propagation of finite-amplitude waves in natural phenomena such as the atmosphere, oceans, optic fibers, and signal processing.

Figures display the interaction between two-solitons (a), and breather structures (b), of the Gardner equation in dusty plasma with polarized force for the parameter values \(k_i = 5, k_e = 2.5, \mu _i = 0.7, \mu _e = 0.3, \mu = 10, \rho = 1.01, \sigma _i = 0.1, R = 0.5, Z = 0.01\), respectively. The manuscript presents some graphs to illustrate the propagation and interaction between two-soliton solutions, as well as the propagation of various breather structures in dusty plasma under polarized force. We explore the presented wave solutions using the symbolic computation software Mathematica. The diversity in two-solitons and breather structures depends on the plasma parameter and the choice of wave number, real or complex. This work analyzes, through graphical representation, how the plasma system affects the above nonlinear structures.

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利用广义极化力研究尘埃等离子体中的多孤子、呼吸器结构
摘要 一项理论研究深入探讨了在一个非均匀、不均匀、非磁化的尘埃等离子体中存在的多重孤子和呼吸器构型,其特点是具有普遍的极化力。该系统包括离子、电子、带正电和负电的尘埃粒子,按照超热分布。利用还原扰动技术(RPT),从基本流体力学模型方程推导出了加德纳方程(GE)。利用 Hirota 双线性方法(HBM)合成了 GE 的多孤子,通过适当选择复波数,进一步促进了对呼吸解的探索。该系统同时表现出压缩和稀疏多孤子现象。此外,呼吸结构的行为随相关等离子体参数的变化而变化;偶尔,它们会重叠,而在其他时候,它们仍然完全不相连。这项研究对研究大气、海洋、光纤和信号处理等自然现象中有限振幅波的传播具有重要意义。图形摘要图中分别显示了参数值为\(k_i = 5, k_e = 2.5, \mu _i = 0.7, \mu _e = 0.3, \mu = 10, \rho = 1.01, \sigma _i = 0.1, R = 0.5, Z = 0.01\)时,尘埃等离子体中具有极化力的加德纳方程的双孑子(a)和呼吸器结构(b)之间的相互作用。手稿中的一些图表说明了双孑子解的传播和相互作用,以及各种呼吸结构在极化力作用下在尘埃等离子体中的传播。我们使用符号计算软件 Mathematica 探索了所呈现的波解。双孤立子和呼吸结构的多样性取决于等离子体参数和波数(实数或复数)的选择。这项工作通过图形表示法,分析了等离子体系统如何影响上述非线性结构。
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来源期刊
The European Physical Journal D
The European Physical Journal D 物理-物理:原子、分子和化学物理
CiteScore
3.10
自引率
11.10%
发文量
213
审稿时长
3 months
期刊介绍: The European Physical Journal D (EPJ D) presents new and original research results in: Atomic Physics; Molecular Physics and Chemical Physics; Atomic and Molecular Collisions; Clusters and Nanostructures; Plasma Physics; Laser Cooling and Quantum Gas; Nonlinear Dynamics; Optical Physics; Quantum Optics and Quantum Information; Ultraintense and Ultrashort Laser Fields. The range of topics covered in these areas is extensive, from Molecular Interaction and Reactivity to Spectroscopy and Thermodynamics of Clusters, from Atomic Optics to Bose-Einstein Condensation to Femtochemistry.
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