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Nonlinear Dispersive and Dissipative Electrostatic Structures in Two-Dimensional Electron-Positron-Ion Quantum Plasma

Nonlinear Dispersive and Dissipative Electrostatic Structures in Two-Dimensional Electron-Positron-Ion Quantum Plasma
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摘要 The nonlinear features of two-dimensional ion acoustic(IA) solitary and shock structures in a dissipative electron-positron-ion(EPI) quantum plasma are investigated. The dissipation in the system is taken into account by incorporating the kinematic viscosity of ions in plasmas. A quantum hydrodynamic(QHD) model is used to describe the quantum plasma system. The propagation of small but finite amplitude solitons and shocks is governed by the Kadomtsev-Petviashvili-Burger(KPB) equation. It is observed that depending on the values of plasma parameters(viz.quantum diffraction, positron concentration, viscosity), both compressive and rarefactive solitons and shocks are found to exist. Furthermore, the energy of the soliton is computed and possible solutions of the KPB equation are presented numerically in terms of the monotonic and oscillatory shock profiles
作者 Nabakumar Ghosh Biswajit Sahu Nabakumar Ghosh;Biswajit Sahu(Department of Mathematics,Mugberia Gangadhar Mahavidyalaya;Department of Mathematics, West Bengal State University)
出处 《Communications in Theoretical Physics》 SCIE CAS CSCD 2019年第2期237-242,共6页 理论物理通讯(英文版)
关键词 quantum plasma Kadomtsev-Petviashvili-Burger equation NONLINEAR structures quantum plasma Kadomtsev-Petviashvili-Burger equation nonlinear structures
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