Please use this identifier to cite or link to this item: https://research.matf.bg.ac.rs/handle/123456789/2028
Title: On the Distribution Function of Particles at Quasi-parallel Collisionless Shocks
Authors: Arbutina, Bojan 
Zeković, Vladimir 
Affiliations: Astronomy 
Astronomy 
Issue Date: 2020
Rank: M33
Publisher: Beograd : Matematički fakultet
Related Publication(s): Proceedings of the XII Serbian-Bulgarian Astronomical Conference SBAC 2020
Conference: Serbian-Bulgarian Astronomical Conference SBAC2020(12 ; 2020 ; Sokobanja)
Abstract: 
The departure of particle distributions from the Maxwellian is commonly observed in space plasmas. These non-Maxwellian distributions which are typical for
plasmas that are not in thermal equilibrium, can be modeled with Kappa distribution function. Kinetic simulations of quasi-parallel collisionless shocks show that proton
distribution is a composite of thermal, supra-thermal, and non-thermal parts, which correspond to thermalized, pre-accelerated, and diffusive-shock-accelerated protons,
respectively. By using particle-in-cell shock simulations, we show that Kappa distribution adequately fits thermal and supra-thermal parts together, as one continuous
distribution in early proton spectra. We find that the index kappa of the distribution increases with the distance from the shock, following the decrease in supra-thermal
part. In the far downstream, initially strong supra-thermal part almost completely fades, leaving the proton distribution composed of a Maxwellian and a power-law.
URI: https://research.matf.bg.ac.rs/handle/123456789/2028
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