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Search for dark matter gamma-ray emission from the Andromeda Galaxy with the High-Altitude Water Cherenkov Observatory

  • A. Albert
    ,
  • R. Alfaro
    ,
  • C. Alvarez
    ,
  • J. D. Álvarez
    ,
  • R. Arceo
    ,
  • J. C. Arteaga-Velázquez
  • Los Alamos National Laboratory
    ,
  • Universidad Nacional Autónoma de México
    ,
  • Universidad Autonoma de Chiapas
    ,
  • Universidad Michoacana de San Nicolas de Hidalgo
    ,
  • Pennsylvania State University
    ,
  • University of Rochester
Research Output:
Contribution to journal
Article
Peer-review

Open access

Publication metrics

Metrics

Scopus
Citations
SciVal
Citations
15
SciVal
FWCI
0.39
SciVal
Author count
101
SciVal
Paper percentile
47

Abstract

The Andromeda Galaxy (M31) is a nearby (∼780 kpc) galaxy similar to our own Milky Way. Observational evidence suggests that it resides in a large halo of dark matter (DM), making it a good target for DM searches. We present a search for gamma rays from M31 using 1017 days of data from the High Altitude Water Cherenkov (HAWC) Observatory. With its wide field of view and constant monitoring, HAWC is well-suited to search for DM in extended targets like M31. No DM annihilation or decay signal was detected for DM masses from 1 to 100 TeV in the b, t, τ+τ-, μ+μ-, and W+W- channels. Therefore we present limits on those processes. Our limits nicely complement the existing body of DM limits from other targets and instruments. Specifically the DM decay limits from our benchmark model are the most constraining for DM masses from 25 TeV to 100 TeV in the b and t channels. In addition to DM-specific limits, we also calculate general gamma-ray flux limits for M31 in 5 energy bins from 1 TeV to 100 TeV.

Publication Information

Output type

Research Output:
Contribution to journal
Article
Peer-review

Original language

English

Article number

043

Journal (Volume, Issue Number)

Journal of Cosmology and Astroparticle Physics (Volume 2018, Issue 6)

Publication milestones

  • Published - 29/06/2018

Publication status

Published - 29/06/2018

ISSN

1475-7516

Publication IDs

  • Scopus: 85051188569

Funding Details

We thank the CLUMPY development team for providing us with the developer’s version of the software that contained the most recent models. We also thank Miguel Angel Sanchez Conde for useful discussions regarding the DM halo modeling and Pasquale Serpico for useful discussions on the absorption of high energy gamma rays. We acknowledge the support from: the US National Science Foundation (NSF); the US Department of Energy Office of High- Energy Physics; the Laboratory Directed Research and Development (LDRD) program of Los Alamos National Laboratory; Consejo Nacional de Ciencia y Tecnología (CONACyT), México (grants 271051, 232656, 260378, 179588, 239762, 254964, 271737, 258865, 243290, 132197), Laboratorio Nacional HAWC de rayos gamma; L’OREAL Fellowship for Women in Science 2014; Red HAWC, México; DGAPA-UNAM (grants IG100317, IN111315, IN111716-3, IA102715, 109916, IA102917); VIEP-BUAP; PIFI 2012, 2013, PROFOCIE 2014, 2015;the University of Wisconsin Alumni Research Foundation; the Institute of Geophysics, Planetary Physics, and Signatures at Los Alamos National Laboratory; Polish Science Centre grant DEC-2014/13/B/ST9/945; Coordinación de la Investigación Científica de la Universidad Michoacana. Thanks to Luciano Díaz and Eduardo Murrieta for technical support.
FundersFunding numbers
DGAPA-UNAM
IA102917, IA102715, IN111716-3, 109916, IN111315, IG100317
Planetary Physics
-
Polish Science Centre
DEC-2014/13/B/ST9/945
US Department of Energy Office of High
-
US National Science Foundation
-
VIEP-BUAP
-
NSF
1806408, 1806854, 1912708
NSF
-
WARF
-
LDRD
-
LANL
-
NRIAG
-
CONACYT
239762, 271051, 254964, 258865, 260378, 132197, 179588, 232656, 243290, 271737
CONACYT
-
CIC
-