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Title: Deep view of the Large Magellanic Cloud with six years of Fermi -LAT observations

Journal Article · · Astronomy and Astrophysics
 [1]
  1. Deutsches Elektronen-Synchrotron (DESY), Hamburg (Germany)

Context. The nearby Large Magellanic Cloud (LMC) provides a rare opportunity of a spatially resolved view of an external star-forming galaxy in -rays. The LMC was detected at 0.1–100 GeV as an extended source with CGRO/EGRET and using early observations with the Fermi-LAT. The emission was found to correlate with massive star-forming regions and to be particularly bright towards 30 Doradus. Aims. Studies of the origin and transport of cosmic rays (CRs) in the Milky Way are frequently hampered by line-of-sight confusion and poor distance determination. The LMC offers a complementary way to address these questions by revealing whether and how the -ray emission is connected to specific objects, populations of objects, and structures in the galaxy. Methods. We revisited the -ray emission from the LMC using about 73 months of Fermi-LAT P7REP data in the 0.2–100 GeV range. We developed a complete spatial and spectral model of the LMC emission, for which we tested several approaches: a simple geometrical description, template-fitting, and a physically driven model for CR-induced interstellar emission. Results. In addition to identifying PSR J0540-6919 through its pulsations, we find two hard sources positionally coincident with plerion N 157B and supernova remnant N 132D, which were also detected at TeV energies with H.E.S.S. We detect an additional soft source that is currently unidentified. Extended emission dominates the total flux from the LMC. It consists of an extended component of about the size of the galaxy and additional emission from three to four regions with degree-scale sizes. If it is interpreted as CRs interacting with interstellar gas, the large-scale emission implies a large-scale population of ~1–100GeV CRs with a density of ~30% of the local Galactic value. On top of that, the three to four small-scale emission regions would correspond to enhancements of the CR density by factors 2 to 6 or higher, possibly more energetic and younger populations of CRs compared to the large-scale population. An alternative explanation is that this is emission from an unresolved population of at least two dozen objects, such as pulsars and their nebulae or supernova remnants. This small-scale extended emission has a spatial distribution that does not clearly correlate with known components of the LMC, except for a possible relation to cavities and supergiant shells. Conclusions. The Fermi-LAT GeV observations allowed us to detect individual sources in the LMC. Three of the newly discovered sources are associated with rare and extreme objects. The 30 Doradus region is prominent in GeV -rays because PSR J0540-6919 and N 157B are strong emitters. The extended emission from the galaxy has an unexpected spatial distribution, and observations at higher energies and in radio may help to clarify its origin. Key words. Gamma

Research Organization:
SLAC National Accelerator Lab., Menlo Park, CA (United States)
Sponsoring Organization:
USDOE
Grant/Contract Number:
AC02-76SF00515
OSTI ID:
1355679
Journal Information:
Astronomy and Astrophysics, Vol. 586; ISSN 0004-6361
Publisher:
EDP SciencesCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 52 works
Citation information provided by
Web of Science

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Cited By (24)

Discovery of GeV gamma-ray emission from the LMC B0443-6657 with the Fermi Large Area Telescope journal January 2018
Minimum Spanning Tree cluster analysis of the LMC region above 10 GeV: detection of the SNRs N 49B and N 63A journal June 2018
The e-ASTROGAM mission: Exploring the extreme Universe with gamma rays in the MeV – GeV range journal June 2017
Detection of variable VHE γ -ray emission from the extra-galactic γ -ray binary LMC P3 journal February 2018
A multifrequency radio continuum study of the Magellanic Clouds – I. Overall structure and star formation rates journal July 2018
Breaking the radio – gamma-ray connection in Arp 220 journal January 2019
The orbital parameters of the gamma-ray binary LMC P3† journal January 2019
The 30 Year Search for the Compact Object in SN 1987A journal September 2018
Identification of Blazar Candidates behind Small and Large Magellanic Clouds journal November 2018
Evidence of AGN Activity in the Gamma-Ray Emission from Two Starburst Galaxies journal October 2019
3FHL: The Third Catalog of Hard Fermi -LAT Sources journal September 2017
Fermi Large Area Telescope Fourth Source Catalog journal March 2020
Fermi Large Area Telescope Fourth Source Catalog text January 2020
The e-ASTROGAM mission text January 2017
3FHL: The Third Catalog of Hard Fermi -LAT Sources text January 2017
Fermi Large Area Telescope Fourth Source Catalog collection January 2020
The e-ASTROGAM mission (exploring the extreme Universe with gamma rays in the MeV-GeV range) text January 2016
3FHL: The Third Catalog of Hard Fermi-LAT Sources text January 2017
Detection of variable VHE gamma-ray emission from the extra-galactic gamma-ray binary LMC P3 text January 2018
The 30-Year Search for the Compact Object in SN 1987A text January 2018
Minimum Spanning Tree cluster analysis of the LMC region above 10 GeV: detection of the SNRs N 49B and N 63A text January 2018
Identification of blazar candidates behind Small and Large Magellanic Clouds text January 2018
Breaking the Radio - Gamma-Ray Connection in Arp 220 text January 2019
The orbital parameters of the gamma-ray binary LMC P3 text January 2019


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