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Constraining Sterile Neutrino Warm Dark Matter with Chandra Observations of the Andromeda Galaxy

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arxiv 1111.4217 v2 pith:7ETJGH3F submitted 2011-11-17 astro-ph.CO hep-ph

classification astro-ph.COhep-ph
keywords neutrinosteriledarkgalaxymatterandromedachandraconstrain
verification ladder T0 review T1 audit T2 compute T3 formal
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We use the Chandra unresolved X-ray emission spectrum from a 12'-28' (2.8-6.4 kpc) annular region of the Andromeda galaxy to constrain the radiative decay of sterile neutrino warm dark matter. By excising the most baryon-dominated, central 2.8 kpc of the galaxy, we reduce the uncertainties in our estimate of the dark matter mass within the field of view and improve the signal-to-noise ratio of prospective sterile neutrino decay signatures relative to hot gas and unresolved stellar emission. Our findings impose the most stringent limit on the sterile neutrino mass to date in the context of the Dodelson-Widrow model, m_s < 2.2 keV (95% C.L.). Our results also constrain alternative sterile neutrino production scenarios at very small active-sterile neutrino mixing angles.

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Cited by 2 Pith papers

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    A conformal freeze-in model with a neutrino portal can produce the observed dark matter abundance and, in part of its parameter space, the neutrino mass scale, while evading X-ray constraints for composite sterile-neu...

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