2008A&A...484..267F


Query : 2008A&A...484..267F

2008A&A...484..267F - Astronomy and Astrophysics, volume 484, 267-273 (2008/6-2)

High-energy neutrino emission from shell-type supernova remnants.

FANG J., ZHANG L., YANG C.Y., LIN G.F. and ZHENG A.M.

Abstract (from CDS):

Based on a time-dependent model of particle production and non-thermal photon emission, we study high-energy neutrino emission from shell-type supernova remnants (SNRs). In such a model, particles are accelerated to relativistic energies through the shock acceleration mechanism and evolve with time in an SNR. For a given SNR, therefore, the temporal evolution of the particle energy distribution, the non-thermal spectrum of photons, and the spectrum of neutrinos can be calculated numerically. We apply the model to two young SNRs, G347.3-0.5 and G266.2-1.2, and two old ones, G8.7-0.1 and G23.3-0.3. For each SNR, we determine the parameters involved in the model by comparing the predicted non-thermal spectrum with the observed radio, X-ray and γ-ray data. We study the properties of the corresponding neutrino emission, including the neutrino spectrum and the event rates expected in the next-generation km3-scale neutrino telescope, KM3NeT. Our results indicate that the high-energy TeV γ-rays from the four SNRs are produced predominately via hadronic interaction and that young SNRs such as G266.2-1.2 and G347.3-0.5 are the potential neutrino sources whose neutrinos are most likely to be identified by next-generation km3 neutrino telescopes.

Abstract Copyright:

Journal keyword(s): gamma rays: theory - neutrinos - radiation mechanisms: non-thermal - supernova remnants

Simbad objects: 7

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Number of rows : 7
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 M 1 SNR 05 34 30.9 +22 00 53           ~ 6193 1
2 NAME Vela Jr SN BL? 08 52.0 -46 20           ~ 474 2
3 1FGL J1711.7-3944c BL? 17 12 27 -39 41.2     12.27     ~ 723 1
4 PSR B1800-21 Psr 18 03 51.45 -21 37 08.1           ~ 260 1
5 1AGLR J1807-2103 gam 18 03 52.1 -21 10 54           ~ 72 0
6 W 30 BL? 18 05 31.2011719 -21 25 48.001099           ~ 174 1
7 SNR G023.3-00.3 SNR 18 34 51.80 -08 44 38.2           ~ 218 0

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