2019MNRAS.482.5268Z


Query : 2019MNRAS.482.5268Z

2019MNRAS.482.5268Z - Mon. Not. R. Astron. Soc., 482, 5268-5274 (2019/February-1)

Global constraints on diffusive particle acceleration by strong non-relativistic shocks.

ZHANG Y. and LIU S.

Abstract (from CDS):

Estimating the cosmic-ray acceleration efficiency ε in supernova remnants (SNRs) through observations is a challenging task in general. Based on the Rankine-Hugoniot shock conditions, we find an anticorrelation between ε and the power-law spectral index α of relativistic particle distribution produced via diffusive particle acceleration by non-relativistic shocks, implying more efficient acceleration in older SNRs with harder radio spectra. Then ε may be estimated from some hard radio spectral index measurements. Assuming the particle distribution in downstream of strong shocks to be a non-relativistic Maxwellian plus a relativistic power law with a high-energy cut-off, we also find that the injection rate for relativistic particles η needs to >=10–6 for a prominent decrease of the adiabatic index in SNRs, which implies higher compression ratio and lower values of α. This threshold of η increases with the shock speed u1, which may explain the relatively harder radio spectra of older SNRs with lower u1. We show that η and/or the relativistic cut-off momentum pm need to be low for old SNRs, and expect a gradual increase of ε as SNR evolves with gradually decreasing η and pm.

Abstract Copyright: © 2018 The Author(s) Published by Oxford University Press on behalf of the Royal Astronomical Society

Journal keyword(s): acceleration of particles - shock waves - cosmic rays - ISM: supernova remnants

Simbad objects: 9

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Number of rows : 9
N Identifier Otype ICRS (J2000)
RA
ICRS (J2000)
DEC
Mag U Mag B Mag V Mag R Mag I Sp type #ref
1850 - 2024
#notes
1 SN 1572A SN* 00 25 21.5 +64 08 27           B8 1188 1
2 SNR B0509-67.5 SNR 05 09 31 -67 31.3           ~ 224 0
3 SNR B0519-69.0 SNR 05 19 35.14 -69 02 00.5           ~ 156 0
4 ESO 134-11 HII 14 40 29 -62 38.7           ~ 565 1
5 NAME Lupus SN SNR 15 02 22.1 -42 05 49           ~ 1328 1
6 1FGL J1711.7-3944c BL? 17 12 27 -39 41.2     12.27     ~ 723 1
7 NAME Kepler SNR Rad 17 30 40.5 -21 29 14           ~ 795 4
8 NAME Cyg Loop SNR 20 51.0 +30 40           ~ 913 0
9 3C 461 BL? 23 23 24.000 +58 48 54.00     14.30     ~ 2790 1

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