Indirect searches for dark matter bound state formation and level transitions

Indirect searches for dark matter (DM) have conventionally been applied to the products of DM annihilation or decay. If DM couples to light force carriers, however, it can be captured into bound states via dissipation of energy that may yield detectable signals. We extend the indirect searches to...

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Main Author: Iason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. Rodd
Format: Article
Language:English
Published: SciPost 2020-11-01
Series:SciPost Physics
Online Access:https://scipost.org/SciPostPhys.9.5.068
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author Iason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. Rodd
author_facet Iason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. Rodd
author_sort Iason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. Rodd
collection DOAJ
description Indirect searches for dark matter (DM) have conventionally been applied to the products of DM annihilation or decay. If DM couples to light force carriers, however, it can be captured into bound states via dissipation of energy that may yield detectable signals. We extend the indirect searches to DM bound state formation and transitions between bound levels, and constrain the emission of unstable dark photons. Our results significantly refine the predicted signal flux that could be observed in experiments. As a concrete example, we use Fermi-LAT dwarf spheroidal observations to obtain constraints in terms of the dark photon mass and energy which we use to search for the formation of stable or unstable bound states.
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spelling doaj.art-082cc6e3d2d344e199c5d5a2f70b23fe2022-12-21T17:49:44ZengSciPostSciPost Physics2542-46532020-11-019506810.21468/SciPostPhys.9.5.068Indirect searches for dark matter bound state formation and level transitionsIason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. RoddIndirect searches for dark matter (DM) have conventionally been applied to the products of DM annihilation or decay. If DM couples to light force carriers, however, it can be captured into bound states via dissipation of energy that may yield detectable signals. We extend the indirect searches to DM bound state formation and transitions between bound levels, and constrain the emission of unstable dark photons. Our results significantly refine the predicted signal flux that could be observed in experiments. As a concrete example, we use Fermi-LAT dwarf spheroidal observations to obtain constraints in terms of the dark photon mass and energy which we use to search for the formation of stable or unstable bound states.https://scipost.org/SciPostPhys.9.5.068
spellingShingle Iason Baldes, Francesca Calore, Kalliopi Petraki, Vincent Poireau, Nicholas L. Rodd
Indirect searches for dark matter bound state formation and level transitions
SciPost Physics
title Indirect searches for dark matter bound state formation and level transitions
title_full Indirect searches for dark matter bound state formation and level transitions
title_fullStr Indirect searches for dark matter bound state formation and level transitions
title_full_unstemmed Indirect searches for dark matter bound state formation and level transitions
title_short Indirect searches for dark matter bound state formation and level transitions
title_sort indirect searches for dark matter bound state formation and level transitions
url https://scipost.org/SciPostPhys.9.5.068
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