搜索

x
中国物理学会期刊

非磁化热尘埃等离子体中(3+1)维尘埃声波的传播特征

CSTR: 32037.14.aps.75.20260070

Propagating characteristics of (3+1)-dimensional dust acoustic waves in an unmagnetized warm dusty plasma

CSTR: 32037.14.aps.75.20260070
PDF
导出引用
  • 本文以磁流体力学理论为基础, 探讨当非磁化热尘埃等离子体由尘埃颗粒、电子和nonthermal分布离子构成时, 该系统中(3+1)维非线性尘埃声波的演化行为. 首先, 依次使用线性化方法、约化摄动法和Sagdeev势方法, 推导获得色散关系、Kadomtsev-Petviashvili (KP)方程以及Sagdeev势函数的解析表达式, 用以描述(3+1)维非线性尘埃声波随时空的演化与动力学行为. 然后, 利用数值模拟方法, 探讨系统处于等温和绝热两种不同状态时, 各种系统状态参数对非线性尘埃声波的色散关系、KP方程演化特征、二维自治系统相空间结构演变、Sagdeev势函数零点的变化及孤立波波形的影响. 最后, 研究结果表明: 当(3+1)维非磁化热尘埃等离子体系统处于等温和绝热两种不同热力学状态时, 诸如nonthermal离子特征、等离子体各组分的温度状态以及组分浓度等各类系统状态参数均会对稀疏型非线性孤立波传播频率、振幅、宽度及波形等演化特征产生显著作用.

     

    Based on the magnetohydrodynamics (MHD) theory, the propagating characteristics of (3+1)-dimensional nonlinear dust acoustic waves (DAW) have been studied in an unmagnetized warm dusty plasma containing dust particles, electrons, and ions with nonthermal distribution. Firstly, the dynamic evolution of (3+1)-dimensional nonlinear DAW has been investigated by deriving the dispersion relation via the linearized method, the Kadomtsev–Petviashvili (KP) equation via the reductive perturbation method, and the Sagdeev potential function via the Sagdeev potential technique. Secondly, numerical simulations have been performed to investigate the effects of various system parameters on the nonlinear dispersion relation, the KP equation, phase-space structures, Sagdeev potential profiles, and the dust acoustic solitary waves under the isothermal ( \gamma =1 ) and adiabatic ( \gamma =5/3 ) conditions. Finally, the results indicate that the propagation properties of nonlinear rarefactive dust acoustic solitary waves are influenced by various system parameters. Moreover, the frequency, amplitude, width and waveform of the DAW are affected by nonthermal ions, and particle’s temperature in an unmagnetized warm dusty plasma under both isothermal and adiabatic states.

     

    目录

    /

    返回文章
    返回