Cylindrical and spherical ion acoustic shock waves with two temperature superthermal electrons in dusty plasma

被引:6
作者
Bansal, Sona [1 ]
Aggarwal, Munish [2 ]
Gill, Tarsem S. [3 ]
机构
[1] Sikh Natl Coll, Banga 144505, India
[2] DAV Univ, Dept Phys, Jalandhar 144012, Punjab, India
[3] Guru Nanak Dev Univ, Dept Phys, Amritsar 143005, Punjab, India
关键词
Plasma Physics;
D O I
10.1140/epjd/e2020-10316-0
中图分类号
O43 [光学];
学科分类号
070207 ; 0803 ;
摘要
In the present study, the cylindrical/spherical ion acoustic shock waves have been investigated in unmagnetized dusty plasma consisting of positive ions, immobile dust particles and kappa distributed cold and hot electrons. A multiple scale expansion method is employed to derive Burgers equation (BE) and modified Burgers equation (MBE) by including higher order nonlinearity. The basic characeristics of the shock waves have been analyzed numerically and graphically for different physical parameters relevant to space and laboratory dusty plasma environments through 2D figures. We show that the amplitude of the wave decreases faster as one departs away from the axis of the cylinder or centre of the sphere. Such decaying behaviour continues as time progresses. Furthermore, the parametric dependence of wave properties (amplitude, width) on kappa index, density and temperature of cold and hot electrons, concentration of dust particles, thermal effects and kinematic viscosity of ions has been studied in detail and findings obtained here will be beneficial to further astrophysical investigations.
引用
收藏
页数:7
相关论文
共 38 条
[11]   Formation of large-amplitude dust ion-acoustic shocks in dusty plasmas [J].
Eliasson, B ;
Shukla, PK .
PHYSICS OF PLASMAS, 2005, 12 (02) :024502-1
[12]   Ion-acoustic solitary excitations in a two-electron-temperature plasma with adiabatic warm ions: Oblique modulation [J].
Esfandyari-Kalejahi, A ;
Asgari, H .
PHYSICS OF PLASMAS, 2005, 12 (10) :1-8
[13]  
Finlayson B., 1972, The method of weighted residuals and variational principles
[14]   Modulational instability of electron-acoustic waves: an application to auroral zone plasma [J].
Gill, T. S. ;
Kaur, H. ;
Bansal, S. ;
Saini, N. S. ;
Bala, P. .
EUROPEAN PHYSICAL JOURNAL D, 2007, 41 (01) :151-156
[15]  
GLOECKLER G, 1992, ASTRON ASTROPHYS SUP, V92, P267
[16]   Meter-scale variations of the charge carried by mesospheric dust [J].
Havnes, O ;
Naesheim, LI ;
Hartquist, TW ;
Morfill, GE ;
Melandso, F ;
Schleicher, B ;
Troim, J ;
Blix, T ;
Thrane, E .
PLANETARY AND SPACE SCIENCE, 1996, 44 (10) :1191-1194
[17]   Nonlinear Dynamics in a Nonextensive Complex Plasma with Viscous Electron Fluids [J].
Hossen, M. R. ;
Ema, S. A. ;
Mamun, A. A. .
CHINESE PHYSICS LETTERS, 2016, 33 (06)
[18]   Shock formation in a negative ion plasma [J].
Luo, QZ ;
D'Angelo, N ;
Merlino, RL .
PHYSICS OF PLASMAS, 1998, 5 (08) :2868-2870
[19]   The tanh method: a tool for solving certain classes of nonlinear evolution and wave equations [J].
Malfliet, W .
JOURNAL OF COMPUTATIONAL AND APPLIED MATHEMATICS, 2004, 164 :529-541
[20]   Nonplanar Shock Waves in Dusty Plasmas [J].
Mamun, A. A. ;
Shukla, P. K. .
DUSTY/COMPLEX PLASMAS: BASIC AND INTERDISCIPLINARY RESEARCH: SIXTH INTERNATIONAL CONFERENCE ON THE PHYSICS OF DUSTY PLASMAS, 2011, 1397