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Effect of Anisotropic Ion Pressure on Solitary Waves in Magnetized Dusty Plasmas
Authors:M. Adnan  S. Mahmood  Anisa Qamar
Affiliation:1. Email:adnan physiks@yahoo.com;4. Institute of Physics and Electronics, University of Peshawar, Peshawar 25000, Pakistan;5. Theoretical Plasma Physics Division TPD, PINSTECH P.O. Nilore Islamabad 44000 Pakistan;6. National Center for Physics, Quaid‐i‐Azam University Campus, Shahdra Valley Road, Islamabad 44000 Pakistan
Abstract:The propagation of linear and nonlinear dust ion acoustic waves (DIAWs) are studied in a collisionless magnetized plasma which consists of warm ions having anisotropic thermal pressure, nonthermal (energetic) electrons and static dust particles of positive and negative charge polarity. The anisotropic ion pressure is defined using double adiabatic Chew‐Golberger‐Low (CGL) theory. In the linear regime, the propagation properties of the two possible modes are investigated via ion pressure anisotropy, dust particle polarity and nonthermality of electrons. Using reductive method Zakharov‐Kuznetsov (ZK) equation is derived for the propagation of two dimensional electrostatic dust ion acoustic solitary waves in dusty plasmas. It is found that both compressive and rarefactive solitons are formed in presence of nonthermal electrons using Cairn's distribution [R.A. Cairns, A.A. Mamun, R. Bingham, R.O. Dendy, R. Bostrom, C.M.C. Nairn and P.K. Shukla, Geophys.Res. Lett. 22 , 2709 (1995)] in the system. The ion pressure anisotropy, nonthermality of electrons and charge polarity of the dust particles have significant effects on the amplitude and width of the dust ion acoustic solitary waves in such anisotropic nonthermal magnetized dusty plasmas. The numerical results are also presented for illustration. Our finding is applicable to space dusty plasma regimes having anisotropic ion pressure and nonthermal electrons. (© 2014 WILEY‐VCH Verlag GmbH & Co. KGaA, Weinheim)
Keywords:Magnetized dusty plasma  ZK equation  anisotropic ions  nonthermal electron  reductive perturbation method
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