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Collective Thomson scattering in magnetized electron and positron pair plasma and the application to induced Compton scattering

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arxiv 2310.02306 v2 pith:EWJBGX4M submitted 2023-10-03 astro-ph.HE physics.plasm-ph

Collective Thomson scattering in magnetized electron and positron pair plasma and the application to induced Compton scattering

classification astro-ph.HE physics.plasm-ph
keywords plasmascatteringcollectivecross-sectionmagnetizedpaircomparablecompton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We consider collective Thomson scattering of an incident X-mode wave (with the electric vector perpendicular to the background magnetic field) in magnetized electron and positron pair plasma. The collective effects do not exactly cancel out in contrast to the non-magnetized case. Still, the cross-section is comparable to the non-collective one, with the same suppression by the square of the cyclotron frequency in a strong magnetic field. The comparable cross-section holds even though the net current is nearly zero from the drift motion of electrons and positrons. The plasma response does not also affect the cross-section so much. The spectrum of the scattered wave in finite temperature plasma peaks at cyclotron overtones. Based on these results, we also estimate induced Compton scattering in strongly magnetized pair plasma. Implications for pulsars and fast radio bursts are discussed.

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  1. Unified kinetic theory of induced scattering: Compton, Brillouin, and Raman processes in magnetized electron and positron pair plasma

    astro-ph.HE 2025-10 conditional novelty 6.0

    In strongly magnetized pair plasma, induced Compton and Brillouin scattering dominate in ordinary/neutral modes, while stimulated Raman scattering is enabled in a charged mode with growth rate (t_R)^-1 = a_e (omega0/o...