H.E.S.S. observations of RX J1713.7−3946 with improved angular and spectral resolution: evidence for gamma-ray emission extending beyond the X-ray emitting shell
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Date
Authors
Abdalla, H.
Barnard, M.
Böttcher, M.
Davids, I.D.
Garrigoux, T.
Ivascenko, A.
Krüger, P.P.
Pekeur, N.W.
Seyffert, A.S.
Spanier, F.
Researcher ID
26598973 - Abdalla, Hassan
20574266 - Barnard, Monica
24420530 - Böttcher, Markus
13146629 - Davids, Isak Delberth
26909995 - Garrigoux, Tania
24790052 - Ivascenko, Alex
11749903 - Krüger, Petrus Paulus
22050574 - Pekeur, Nicolette Whilna
20126999 - Seyffert, Albertus Stefanus
25161814 - Spanier, Felix Alexander
24922986 - Sushch, Iurii
10060499 - Van der Walt, Diederick Johannes
21106266 - Van Rensburg, Carlo
12006653 - Venter, Christo
26594080 - Wadiasingh, Zorawar
20574266 - Barnard, Monica
24420530 - Böttcher, Markus
13146629 - Davids, Isak Delberth
26909995 - Garrigoux, Tania
24790052 - Ivascenko, Alex
11749903 - Krüger, Petrus Paulus
22050574 - Pekeur, Nicolette Whilna
20126999 - Seyffert, Albertus Stefanus
25161814 - Spanier, Felix Alexander
24922986 - Sushch, Iurii
10060499 - Van der Walt, Diederick Johannes
21106266 - Van Rensburg, Carlo
12006653 - Venter, Christo
26594080 - Wadiasingh, Zorawar
Supervisors
Journal Title
Journal ISSN
Volume Title
Publisher
EDP Sciences
Record Identifier
Abstract
Supernova remnants exhibit shock fronts (shells) that can accelerate charged particles up to very high energies. In the past decade, measurements of
a handful of shell-type supernova remnants in very high-energy gamma rays have provided unique insights into the acceleration process. Among
those objects, RX J1713.7−3946 (also known as G347.3−0.5) has the largest surface brightness, allowing us in the past to perform the most
comprehensive study of morphology and spatially resolved spectra of any such very high-energy gamma-ray source. Here we present extensive
new H.E.S.S. measurements of RX J1713.7−3946, almost doubling the observation time compared to our previous publication. Combined with
new improved analysis tools, the previous sensitivity is more than doubled. The H.E.S.S. angular resolution of 0.048◦
(0.036◦
above 2 TeV)
is unprecedented in gamma-ray astronomy and probes physical scales of 0.8 (0.6) parsec at the remnant's location. The new H.E.S.S. image
of RX J1713.7−3946 allows us to reveal clear morphological differences between X-rays and gamma rays. In particular, for the outer edge of
the brightest shell region, we find the first ever indication for particles in the process of leaving the acceleration shock region. By studying the
broadband energy spectrum, we furthermore extract properties of the parent particle populations, providing new input to the discussion of the
leptonic or hadronic nature of the gamma-ray emission mechanism
Sustainable Development Goals
Description
Citation
Abdalla, H. et al. 2018. H.E.S.S. observations of RX J1713.7−3946 with improved angular and spectral resolution: evidence for gamma-ray emission extending beyond the X-ray emitting shell. Astronomy & astrophysics, 612: Article no A6. [https://doi.org/10.1051/0004-6361/201629790]
