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Quantum Effects on the Linear Dispersion Characteristics in Electron-Positron Plasma

Journal: Journal of Nuclear Physics, Material Sciences, Radiation and Applications (Vol.2, No. 1)

Publication Date:

Authors : ; ; ;

Page : 91-104

Keywords : Quantum Plasma; Dispersion relation; Electron?Positron;

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Abstract

In electron-positron plasmas some of the plasma modes are decoupled due to the equal charge to mass ratio of both species. The dispersion properties of the propagation of linear waves in degenerate electron?positron magnetoplasma are investigated. By using the quantum hydrodynamic equations with magnetic fields of the Wigner?Maxwell system, we have obtained a set of new dispersion relations in which ions' motions are not considered. The general dielectric tensor is derived using the electron and positron densities and its momentum response to the quantum effects due to Bohm potential and the statistical effect of Femi temperature. It has been demonstrated the importance of magnetic field and its role with the quantum effects in these plasmas which support the propagation of electromagnetic linear waves. Besides, the dispersion relations in case of parallel and perpendicular modes are investigated for different positron-electron density ratios. REFERENCES Misner, W. Thorne, K.S. and Wheeler, J.A. Gravitation, Freeman, San Francisco, p. 763(1973). Gibbons, G.W. Hawking, S.W. and Siklos, S. The Very Early Universe, Cambridge University Press, Cambridge, UK, (1983). Manchester, R.J. and Taylor, J.H. Pulsars, Freeman, SanFrancisco, (1977). Begelman, M.C. Blandford, R.D. and Rees, M.D. Rev. Mod Phys. Vol.56, 255(1984). Miller, H.R. and Witta, P.J. in Active Galactic Nuclei, Springer, Berlin, p. 202. (1987). Phys, T. Piran, Rep. 314, 575 (1999); Rev. Mod. Phys. Vol. 76, 1143(2004). Burns, M.L. in Positron-Electrons Pairs in Astrophysics, edited by Burns, M. L. Harding, A. K. and Ramaty, R. American Institute of Physics, New York, (1983). Shukla, P.K. and, Eliasson, B. Stenflo, L. Electromagnetic solitary pulses in a magnetized electron-positron plasma, Physical Review E. Statistical, Nonlinear, and Soft Matter Physics, Vol. 84, 037401 (2011). Y u, M.Y., Shukla, P.K. and Rao, N.N. Astrophys. Space Sci. Vol. 107, 327 (1984). Lakhina, G.S. and Verheest, F. Astrophys. Space Sci. Vol. 253, 97 (1997). Lontano, M., Bulanov S. and Koga, J. Phys. Plasmas Vol. 8, 5113 (2001). Machabeli, G.Z., Osmanov, Z.N. and Mahajan, S.M. Phys. Plasmas Vol. 12, 062901 (2005) Stewart, G.A. and Laing, E.W.J. Plasma Phys. Vol. 47, 295 (1992). Iwamoto, N. Phys. Rev. E Vol. 47, 604 (1993). Shukla, N. and Shukla, P.K. Phys. Lett. A Vol. 367, 120. (2007). Lazarus, J. Bharuthram, R. and Lakhina, G.S. Journal of Plasma Physics Vol. 78, pp 621 628. (2012).

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