Literature DB >> 26430997

Quasiperpendicular High Mach Number Shocks.

A H Sulaiman1, A Masters1, M K Dougherty1, D Burgess2, M Fujimoto3, G B Hospodarsky4.   

Abstract

Shock waves exist throughout the Universe and are fundamental to understanding the nature of collisionless plasmas. Reformation is a process, driven by microphysics, which typically occurs at high Mach number supercritical shocks. While ongoing studies have investigated this process extensively both theoretically and via simulations, their observations remain few and far between. In this Letter we present a study of very high Mach number shocks in a parameter space that has been poorly explored and we identify reformation using in situ magnetic field observations from the Cassini spacecraft at 10 AU. This has given us an insight into quasiperpendicular shocks across 2 orders of magnitude in Alfvén Mach number (M_{A}) which could potentially bridge the gap between modest terrestrial shocks and more exotic astrophysical shocks. For the first time, we show evidence for cyclic reformation controlled by specular ion reflection occurring at the predicted time scale of ~0.3τ_{c}, where τ_{c} is the ion gyroperiod. In addition, we experimentally reveal the relationship between reformation and M_{A} and focus on the magnetic structure of such shocks to further show that for the same M_{A}, a reforming shock exhibits stronger magnetic field amplification than a shock that is not reforming.

Entities:  

Year:  2015        PMID: 26430997     DOI: 10.1103/PhysRevLett.115.125001

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


  1 in total

1.  Quasi-Parallel Shock Reformation Seen by Magnetospheric Multiscale and Ion-Kinetic Simulations.

Authors:  Andreas Johlander; Markus Battarbee; Lucile Turc; Urs Ganse; Yann Pfau-Kempf; Maxime Grandin; Jonas Suni; Vertti Tarvus; Maarja Bussov; Hongyang Zhou; Markku Alho; Maxime Dubart; Harriet George; Konstantinos Papadakis; Minna Palmroth
Journal:  Geophys Res Lett       Date:  2022-01-25       Impact factor: 5.576

  1 in total

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