Discovery of gamma-ray emission from the extragalactic pulsar wind nebula N157B with the High Energy Stereoscopic System
HESS Collaboration: A. Abramowski, F. Acero, F. Aharonian, A.G., Akhperjanian, G. Anton, S. Balenderan, A. Balzer, A. Barnacka, Y. Becherini,, J. Becker, K. Bernl\"ohr, E. Birsin, J. Biteau, A. Bochow, C. Boisson, J., Bolmont, P. Bordas, J. Brucker, F. Brun, P. Brun, T. Bulik

TL;DR
This paper reports the first detection of an extragalactic pulsar wind nebula in gamma rays, N157B in the Large Magellanic Cloud, revealing its energetic properties and implications for pulsar evolution.
Contribution
It presents the first gamma-ray detection of an extragalactic PWN, providing detailed spectral analysis and modeling of its energetic electron population.
Findings
Gamma-ray spectrum well-described by a power-law with index 2.8
Energy stored in electrons and positrons is about 4 x 10^49 erg
TeV gamma-ray luminosity efficiency is approximately 0.08% of pulsar spindown luminosity
Abstract
We present the significant detection of the first extragalactic pulsar wind nebula (PWN) detected in gamma rays, N157B, located in the large Magellanic Cloud (LMC). Pulsars with high spin-down luminosity are found to power energised nebulae that emit gamma rays up to energies of several tens of TeV. N157B is associated with PSRJ0537-6910, which is the pulsar with the highest known spin-down luminosity. The High Energy Stereoscopic System telescope array observed this nebula on a yearly basis from 2004 to 2009 with a dead-time corrected exposure of 46 h. The gamma-ray spectrum between 600 GeV and 12 TeV is well-described by a pure power-law with a photon index of 2.8 \pm 0.2(stat) \pm 0.3(syst) and a normalisation at 1 TeV of (8.2 \pm 0.8(stat) \pm 2.5(syst)) \times 10^-13 cm^-2s^-1TeV^-1. A leptonic multi-wavelength model shows that an energy of about 4 \times 10^49erg is stored in…
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