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Ion-acoustic vortex formation in a non-uniform two-electron-temperature magnetoplasma with sheared ion flow

Published online by Cambridge University Press:  17 October 2011

NAZIA BATOOL
Affiliation:
Theoretical Plasma Physics Group, Department of Physics, Quaid-i-Azam University, Islamabad 45320, Pakistan (a_m_mirza@yahoo.com) National Center of Physics (NCP), Islamabad 45320, Pakistan
ISMAT NAEEM
Affiliation:
Theoretical Plasma Physics Group, Department of Physics, Quaid-i-Azam University, Islamabad 45320, Pakistan (a_m_mirza@yahoo.com)
ARSHAD M. MIRZA
Affiliation:
Theoretical Plasma Physics Group, Department of Physics, Quaid-i-Azam University, Islamabad 45320, Pakistan (a_m_mirza@yahoo.com)
W. MASOOD
Affiliation:
National Center of Physics (NCP), Islamabad 45320, Pakistan Theoretical Plasma Physics Division, PINSTECH, P.O. Nilore, Islamabad 44000, Pakistan

Abstract

We have investigated some linear as well as nonlinear properties of ion-acoustic wave (IAW) propagation in a non-uniform two-electron-temperature magnetoplasma in the presence of ion-sheared flows. In the linear limit, new dispersion relation has been derived and analyzed in some interesting limiting cases. It is shown that ion-sheared flow can drive the IAW unstable under a certain limit.Whereas, in the nonlinear case, dipolar and vortex street type solutions can appear. It is observed that by choosing some typical parameters of Earth's auroral region, the scalelength of the nonlinear structures are significantly modified. The present investigation might be very useful to explain various types of nonlinear structure formation which has been observed in space environments where two-electron-temperature plasma exist.

Type
Papers
Copyright
Copyright © Cambridge University Press 2011

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References

[1]Estabrook, K. and Kruer, W. L. 1978 Phys. Rev. Lett. 40, 42.CrossRefGoogle Scholar
[2]Olsen, N. A. and Lee, Y. C. 1974 Phys. Rev. Lett. 33, 1539.CrossRefGoogle Scholar
[3]Jones, W. D., Lee, A., Gleman, S. M. and Doucet, H. J. 1975 Phys. Rev. Lett. 35, 1349.CrossRefGoogle Scholar
[4]Morales, G. J. and Lee, Y. C. 1974 Phys. Rev. Lett. 33, 1539.Google Scholar
[5]Krall, N. A. and Trivepiece, A. W. 1973 Principles of Plasma Physics. New York: McGraw Hill.CrossRefGoogle Scholar
[6]Ergun, R. E. et al. 1998a Geophys. Res. Lett. 25, 2061.CrossRefGoogle Scholar
[7]Ergun, R. E. 1998b Geophys. Res. Lett. 25, 2061.CrossRefGoogle Scholar
[8]Pottelette, R. et al. 1999 Geophys. Res. Lett. 26, 2629.CrossRefGoogle Scholar
[9]Temerin, M. 1982 Phys. Rev. Lett. 48, 1175.CrossRefGoogle Scholar
[10]Bostrom, R. et al. 1988 Phys. Rev. Lett. 61, 82.CrossRefGoogle Scholar
[11]McFadden, J. P., Carlson, C. W., Ergun, R. E., Mozer, F. S., Muschietti, R. I. and Moebius, E. 2003 Geophys. Res. 108, 8018.CrossRefGoogle Scholar
[12]Matsumoto, H., Kojima, H., Omura, Y., Nagano, I. and Pickett, J. S. 1998 J. Geophys. Res. 25, 1277.Google Scholar
[13]Goswami, B. N. and Buti, B. 1976 Phys. Lett. 57A, 149.CrossRefGoogle Scholar
[14]Sagdeev, R. Z. 1966 Rev. Plasma Phys. 4, 23.Google Scholar
[15]Nishihara, K. and Tajiri, M. 1981 J. Phys. Soc. Jpn. 50, 4047.CrossRefGoogle Scholar
[16]Buti, B. 1980 Phys. Lett. 76A, 251.CrossRefGoogle Scholar
[17]Lakhina, G. S., Shukla, P. K. and Verheest, F. 1992 J. Geophys. Res. 97, 8355.CrossRefGoogle Scholar
[18]Kourakis, I. and Shukla, P. K. 2003 J. Phys. A 36, 11901.Google Scholar
[19]Berthomier, M., Pottelette, R. and Malingre, M. 1998 J. Geophys. Res. 103, 4261.CrossRefGoogle Scholar
[20]Verheest, F., Cattaert, T., Hellberg, M. A. and Mace, R. L. 2006 Phys. Plasmas 13, 042301.CrossRefGoogle Scholar
[21]Masood, W., Hussain, S., Mahmood, S. and Mirza, A. M. 2009 Chinese Phys. Lett. 12, 122301.CrossRefGoogle Scholar
[22]Esfandyari-Kalejahi, A., Kourakis, I. and Akbari-Moghanjoughi, M. 2010 J. Plasma Phys. 76, 169.CrossRefGoogle Scholar
[23]Balaku, T. K., Hellberg, M. A. and Verheest, F. 2010 Eur. Phys. Lett. 91, 15001.CrossRefGoogle Scholar
[24]Dash, S. S. and But, B. 1983 Plasma Phys. 25, 341.CrossRefGoogle Scholar
[25]Yu, M. Y. and Shukla, P. K. 1988 Phys. Rev A 37, 3434.CrossRefGoogle Scholar
[26]Meiss, J. D. and Horton, W. 1983 Phys. Fluids 26, 990.CrossRefGoogle Scholar
[27]Shukla, P. K., Birk, G. T. and Bingham, R. 1995 Geophys. Res. Lett. 22, 671.CrossRefGoogle Scholar
[28]Ghosh, S. S. and Iyengar, A. N. S. 2000 Phys. Scr. 61, 361.CrossRefGoogle Scholar