On the damping of right hand circularly polarized waves in spin quantum plasmas

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Abstract

General dispersion relation for the right hand circularly polarized waves has been derived using non-relativistic spin quantum kinetic theory. Employing the derived dispersion relation, temporal and spatial damping of the right hand circularly polarized waves are studied for both the degenerate and non-degenerate plasma regimes for two different frequency domains: (i) k∥υ 蠑 (ω + ωce), (ω + ωcg) and (ii) k∥υ 蠐 (ω + ωce), (ω + ωcg). Comparison of the cold and hot plasma regimes shows that the right hand circularly polarized wave with spin-effects exists for larger k-values as compared to the spinless case, before it damps completely. It is also found that the spin-effects can significantly influence the phase and group velocities of the whistler waves in both the degenerate and non-degenerate regimes. The results obtained are also analyzed graphically for some laboratory parameters to demonstrate the physical significance of the present work.

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Iqbal, Z., Hussain, A., Murtaza, G., & Ali, M. (2014). On the damping of right hand circularly polarized waves in spin quantum plasmas. Physics of Plasmas, 21(12). https://doi.org/10.1063/1.4904816

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