Published September 27, 2011
| Version 6099
Journal article
Open
Rarefactive and Compressive Solitary Waves in Warm Plasma with Positrons and Nonthermal Electrons
Creators
Description
Ion-acoustic solitary waves in a plasma with nonthermal electrons, thermal positrons and warm ions are investigated using Sagdeev-s pseudopotential technique. We study the effects of non-thermal electrons and ion temperature on solitons and show both negative and positive potential waves are possible.
Files
6099.pdf
Files
(295.7 kB)
Name | Size | Download all |
---|---|---|
md5:49573bd97e17229f3240a0916cba89f5
|
295.7 kB | Preview Download |
Additional details
References
- O. H. Massey, Negative Ions, 3rd ed. (Cambridge University Press, Cambridge, 1976), p. 663; W. Swider, in Ionospheric Modeling, edited by J. N. Korenkov (Birkhauser, Basel, 1988), p. 403; Yu. I. Portnyagin, O. F. Klyuev, A. A. Shidlovsky, A. N. Evdokimov, T. W. Buzdigar, P. G. Matukhin, S. G. Pasynkov, K. N. Shamshev, V. V. Sokolov, and N. D. Semkin, Adv. Space Res. 11, 89 (1991).
- P. H. Chaizy, H. Rème, J. A. Sauvaud, C. D-uston, R. P. Lin, D. E. Larson, D. L. Mitchell, K. A. Anderson, C. W. Carlson, A. Korth, and D. A. Mendis, Nature (London) 349, 393 (1991).
- M.I. Rees, in The Very Early Universe, edited by Gibbons, Hawking, and Siklas, Cambridge University Press, Cambridge, (1983).
- H.R Miller, P.J. Witta, Active Galactic Nuclei, p 202. Springer, Berlin (1987).
- P. Goldreich and W.H. Julian, Astrophys. J. 157 (1969) 869.
- P.K. Shukla, Phys. Plasmas 10 (2003) 1619.
- A.P. Misra, C. Bhowmik, Phys.Lett.A. 369 (2007) 90.
- G. Z. Machabeli, S. V. Vladimirov, D. B. Melrose. Phys Rev E. 59 (1999) 4552.
- G. Z. Machabeli, Qinghuan Luo, w D. B. Melrose, d S. Vladimirov. MNRAS 312 (2000) 51. [10] P.K. Shukla, Europhys. Lett. 22 (1993) 695. [11] P.K. Shukla, L. Stenflo. Astrophys.Space Sci. 209 (1993) 323 [12] M.Y. Yu, P.K. Shukla, L. Stenflo, Astrophys. J. 309 (1986) L63. [13] T. Tajima, T. Taniuti, Phys.Rev.A 42 (1990) 3587. [14] A.A Mamun, Eur. Phys.J.D. 11 (2000)143. [15] Y.N. Nejoh, Australian J.Phys. 50 (1997)309 [16] Y.N. Nejoh, Phys. Plasmas 3 (1996)1447 [17] S.I. Popel, S.V. Vladimirov, P.K. Shukla, Phys.Plasmas 2 (1995) 716. [18] P. K. Shukla, N. L. Tsintsadze, and L. N. Tsintsadze, Phys. Fluids B 5 (1993) 233 [19] R. S. Tiwari, Phys. Lett. A 372 (2008) 3461. [20] S. Ghosh and R. Bharuthram, Astrophys. Space Sci. 314 (2008) 121. [21] H. R. Pakzad, Phys. Lett. A 373 (2009) 847. [22] R. Bostr¨om, IEEE Trans. Plasma Sci. 20 (1992) 756. [23] P.O. Dovner, A.I. Eriksson, R. Bostrom, B. Holback, Geophys. Res. Lett. 21 (1994) 827. [24] R.A. Cairns, A.A. Mamun, R. Bingham, R. Bostr¨om, R.O. Dendy, C.M.C. Nairn, P.K. Shukla, Geophys. Res.Lett. 22 (1995) 2709. [25] A. A. Mamun, Phys. Rev. E 55 (1997) 1852. [26] T.S. Gill, P. Bala, H. Kaur, N.S. Saini, S. Bansal, J. Kaur, Eur.Phys. J.D, 31 (2004) 91. [27] H. R. Pakzad, Astrophys Space Sci, 323 (2009) 345 [28] W.M. Moslem, Physics Letters A, 351 (2006) 290. [29] A. N. Sekar and Y. C. Saxena, Plasma Phys. Controlled Fusion, 27 (1985) 181. [30] N. Plihon, C. S. Corr, P. Chabert, and J.-L. Raimbault, J. Appl. Phys. 98 (2005) 023306.