Amplitude modulation and nonlinear dynamics of small amplitude ion-acoustic waves in five component cometary plasmas

IF 1.3 4区 物理与天体物理 Q3 PHYSICS, FLUIDS & PLASMAS
Debaditya Kolay, Debjit Dutta, Biswajit Sahu
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Abstract

The formation and propagation dynamics of the finite-amplitude ion-acoustic wave (IAW) structures (e.g., soliton, breather, rogue wave, etc.) is theoretically investigated in a plasma comprising of kappa distributed solar and cometary electrons of different temperatures, a hot H 3 O + $$ {\mathrm{H}}_3{\mathrm{O}}^{+} $$ drift ion component, and a pair of oppositely charged oxygen ion components. The modified-KdV (mKdV) equation is derived in order to study the propagation dynamics of the ion-acoustic solitary wave (IASW). It is then converted into the nonlinear Schrödinger equation (NLS) through appropriate algebraic manipulation in order to observe the amplitude modulation of the IAWs. Also, the appearance of envelope soliton and the possibility of breather structure formation have been studied from the NLS equation. The dependence of plasma parameters on the formation and propagation of IAW structures has been briefly discussed. The modified-KdV equation is reduced in a dynamical system through the application of coordinate transformation. The existence of finite-amplitude nonlinear and supernonlinear IAWs is demonstrated by phase plane analysis. Due to the fact that the results are primarily associated with cometary plasma, they possibly provide greater insight of the nonlinear characteristics of cometary plasma.

五成分彗星等离子体中小振幅离子声波的振幅调制与非线性动力学
理论研究了有限振幅离子声波(IAW)结构(如孤子波、呼吸波、流氓波等)在等离子体中的形成和传播动力学,等离子体由不同温度的卡帕分布太阳电子和彗星电子、热漂移离子成分和一对带相反电荷的氧离子成分组成。为了研究离子声孤波(IASW)的传播动力学,推导出了修正 KdV(mKdV)方程。然后通过适当的代数处理将其转换为非线性薛定谔方程(NLS),以观察离子声孤波的振幅调制。此外,还根据 NLS 方程研究了包络孤子的出现和呼吸结构形成的可能性。还简要讨论了等离子体参数对 IAW 结构的形成和传播的影响。通过应用坐标变换将修正的 KdV 方程还原为一个动力学系统。通过相平面分析,证明了有限振幅非线性和超线性 IAW 的存在。由于这些结果主要与彗星等离子体有关,它们有可能为彗星等离子体的非线性特性提供更深入的见解。
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来源期刊
Contributions to Plasma Physics
Contributions to Plasma Physics 物理-物理:流体与等离子体
CiteScore
2.90
自引率
12.50%
发文量
110
审稿时长
4-8 weeks
期刊介绍: Aims and Scope of Contributions to Plasma Physics: Basic physics of low-temperature plasmas; Strongly correlated non-ideal plasmas; Dusty Plasmas; Plasma discharges - microplasmas, reactive, and atmospheric pressure plasmas; Plasma diagnostics; Plasma-surface interaction; Plasma technology; Plasma medicine.
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