Literature DB >> 25768768

Simultaneous acceleration of protons and electrons at nonrelativistic quasiparallel collisionless shocks.

Jaehong Park1, Damiano Caprioli1, Anatoly Spitkovsky1.   

Abstract

We study diffusive shock acceleration (DSA) of protons and electrons at nonrelativistic, high Mach number, quasiparallel, collisionless shocks by means of self-consistent 1D particle-in-cell simulations. For the first time, both species are found to develop power-law distributions with the universal spectral index -4 in momentum space, in agreement with the prediction of DSA. We find that scattering of both protons and electrons is mediated by right-handed circularly polarized waves excited by the current of energetic protons via nonresonant hybrid (Bell) instability. Protons are injected into DSA after a few gyrocycles of shock drift acceleration (SDA), while electrons are first preheated via SDA, then energized via a hybrid acceleration process that involves both SDA and Fermi-like acceleration mediated by Bell waves, before eventual injection into DSA. Using the simulations we can measure the electron-proton ratio in accelerated particles, which is of paramount importance for explaining the cosmic ray fluxes measured on Earth and the multiwavelength emission of astrophysical objects such as supernova remnants, radio supernovae, and galaxy clusters. We find the normalization of the electron power law is ≲10^{-2} of the protons for strong nonrelativistic shocks.

Entities:  

Year:  2015        PMID: 25768768     DOI: 10.1103/PhysRevLett.114.085003

Source DB:  PubMed          Journal:  Phys Rev Lett        ISSN: 0031-9007            Impact factor:   9.161


  3 in total

1.  Core-collapse supernovae as cosmic ray sources.

Authors:  Alexandre Marcowith; Vikram V Dwarkadas; Matthieu Renaud; Vincent Tatischeff; Gwenael Giacinti
Journal:  Mon Not R Astron Soc       Date:  2018-07-05       Impact factor: 5.287

2.  Autogenous and efficient acceleration of energetic ions upstream of Earth's bow shock.

Authors:  D L Turner; L B Wilson; T Z Liu; I J Cohen; S J Schwartz; A Osmane; J F Fennell; J H Clemmons; J B Blake; J Westlake; B H Mauk; A N Jaynes; T Leonard; D N Baker; R J Strangeway; C T Russell; D J Gershman; L Avanov; B L Giles; R B Torbert; J Broll; R G Gomez; S A Fuselier; J L Burch
Journal:  Nature       Date:  2018-09-12       Impact factor: 69.504

3.  Electron Energy Partition across Interplanetary Shocks. I. Methodology and Data Product.

Authors:  Lynn B Wilson; Li-Jen Chen; Shan Wang; Steven J Schwartz; Drew L Turner; Michael L Stevens; Justin C Kasper; Adnane Osmane; Damiano Caprioli; Stuart D Bale; Marc P Pulupa; Chadi S Salem; Katherine A Goodrich
Journal:  Astrophys J Suppl Ser       Date:  2019-07-03       Impact factor: 8.136

  3 in total

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