Prospective dark matter annihilation signals from the Sagittarius Dwarf Spheroidal

Author:

Venville Thomas A A12ORCID,Duffy Alan R12ORCID,Crocker Roland M3ORCID,Macias Oscar45ORCID,Tepper-García Thor67ORCID

Affiliation:

1. Centre for Astrophysics and Supercomputing, Swinburne University of Technology , PO Box 218, Hawthorn, Victoria 3122 , Australia

2. ARC Centre of Excellence for Dark Matter Particle Physics , Australia

3. Research School of Astronomy and Astrophysics, Australian National University , Canberra 2611, A.C.T. , Australia

4. Department of Physics and Astronomy, San Francisco State University , San Francisco, CA 94132 , USA

5. GRAPPA – Gravitational and Astroparticle Physics Amsterdam, University of Amsterdam , Science Park 904, NL-1098 XH Amsterdam , the Netherlands

6. School of Physics, Sydney Institute for Astronomy, The University of Sydney , NSW 2006 , Australia

7. Centre of Excellence for All Sky Astrophysics in Three Dimensions (ASTRO-3D) , Australia

Abstract

ABSTRACT The Sagittarius Dwarf Spheroidal galaxy (Sgr) is investigated as a target for dark matter (DM) annihilation searches utilizing J-factor distributions calculated directly from a high-resolution hydrodynamic simulation of the infall and tidal disruption of Sgr around the Milky Way. In contrast to past studies, the simulation incorporates DM, stellar and gaseous components for both the Milky Way and the Sgr progenitor galaxy. The simulated distributions account for significant tidal disruption affecting the DM density profile. Our estimate of the J-factor value for Sgr, JSgr = 1.48 × 1010 M$_\odot ^2$ kpc−5 (6.46 × 1016 GeV cm−5), is significantly lower than found in prior studies. This value, while formally a lower limit, is likely close to the true J-factor value for Sgr. It implies a DM cross-section incompatibly large in comparison with existing constraints would be required to attribute recently observed gamma-ray emission from Sgr to DM annihilation. We also calculate a J-factor value using a NFW profile fitted to the simulated DM density distribution to facilitate comparison with past studies. This NFW J-factor value supports the conclusion that most past studies have overestimated the dark matter density of Sgr on small scales. This, together with the fact that the Sgr has recently been shown to emit gamma-rays of astrophysical origin, complicate the use of Sgr in indirect DM detection searches.

Funder

RSAA

Australian Research Council

ARC

Publisher

Oxford University Press (OUP)

Subject

Space and Planetary Science,Astronomy and Astrophysics

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