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Ion acoustic solitary waves in an adiabatic dusty plasma:Roles of superthermal electrons, ion loss and ionization

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【作者】 饶强华陈辉刘三秋陈小昌

【Author】 Qianghua Rao;Hui Chen;Sanqiu Liu;Xiaochang Chen;Department of Physics, School of Physics and Materials Science, Nanchang University;Jiangxi Province Key Laboratory of Fusion and Information Control, Nanchang University;

【通讯作者】 刘三秋;陈小昌;

【机构】 Department of Physics, School of Physics and Materials Science, Nanchang UniversityJiangxi Province Key Laboratory of Fusion and Information Control, Nanchang University

【摘要】 We investigate propagation of dust ion acoustic solitary wave(DIASW) in a multicomponent dusty plasma with adiabatic ions,superthermal electrons,and stationary dust.The reductive perturbation method is employed to derive the damped Korteweg-de Vries(DKdV) equation which describes DIASW.The result reveals that the adiabaticity of ions significantly modifies the basic features of the DIASW.The ionization effect makes the solitary wave grow,while collisions reduce the growth rate and even lead to the damping.With the increases in ionization cross section Δσ/σ0,ion-to-electron density ratio δie and superthermal electrons parameter κ,the effect of ionization on DIASW enhances.

【Abstract】 We investigate propagation of dust ion acoustic solitary wave(DIASW) in a multicomponent dusty plasma with adiabatic ions,superthermal electrons,and stationary dust.The reductive perturbation method is employed to derive the damped Korteweg-de Vries(DKdV) equation which describes DIASW.The result reveals that the adiabaticity of ions significantly modifies the basic features of the DIASW.The ionization effect makes the solitary wave grow,while collisions reduce the growth rate and even lead to the damping.With the increases in ionization cross section Δσ/σ0,ion-to-electron density ratio δie and superthermal electrons parameter κ,the effect of ionization on DIASW enhances.

【基金】 supported by the Project of Scientific and Technological Innovation Base of Jiangxi Province, China (Grant No. 20203CCD46008);the Key R&D Plan of Jiangxi Province, China (Grant No. 20223BBH80006);the Natural Science Foundation of Jiangxi Province, China (Grant No. 20212BAB211025);the Jiangxi Province Key Laboratory of Fusion and Information Control (Grant No. 20171BCD40005)
  • 【文献出处】 Chinese Physics B ,中国物理B , 编辑部邮箱 ,2024年08期
  • 【分类号】O53
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