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The EDGES 21 cm Anomaly and Properties of Dark Matter

The recently claimed anomaly in the measurement of the 21 cm hydrogen absorption signal by EDGES at z∼17 , if cosmological, requires the existence of new physics. The possible attempts to resolve the anomaly rely on either (i) cooling the hydrogen gas via new dark matter-hydrogen interactions or (ii...

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Autores principales: Fraser, Sean, Hektor, Andi, Hütsi, Gert, Kannike, Kristjan, Marzo, Carlo, Marzola, Luca, Spethmann, Christian, Racioppi, Antonio, Raidal, Martti, Vaskonen, Ville, Veermäe, Hardi
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.physletb.2018.08.035
http://cds.cern.ch/record/2308095
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author Fraser, Sean
Hektor, Andi
Hütsi, Gert
Kannike, Kristjan
Marzo, Carlo
Marzola, Luca
Spethmann, Christian
Racioppi, Antonio
Raidal, Martti
Vaskonen, Ville
Veermäe, Hardi
author_facet Fraser, Sean
Hektor, Andi
Hütsi, Gert
Kannike, Kristjan
Marzo, Carlo
Marzola, Luca
Spethmann, Christian
Racioppi, Antonio
Raidal, Martti
Vaskonen, Ville
Veermäe, Hardi
author_sort Fraser, Sean
collection CERN
description The recently claimed anomaly in the measurement of the 21 cm hydrogen absorption signal by EDGES at z∼17 , if cosmological, requires the existence of new physics. The possible attempts to resolve the anomaly rely on either (i) cooling the hydrogen gas via new dark matter-hydrogen interactions or (ii) modifying the soft photon background beyond the standard CMB one, as possibly suggested also by the ARCADE 2 excess. We argue that solutions belonging to the first class are generally in tension with cosmological dark matter probes once simple dark sector models are considered. Therefore, we propose soft photon emission by light dark matter as a natural solution to the 21 cm anomaly, studying a few realizations of this scenario. We find that the signal singles out a photophilic dark matter candidate characterised by an enhanced collective decay mechanism, such as axion mini-clusters.
id cern-2308095
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-23080952023-05-10T02:47:16Zdoi:10.1016/j.physletb.2018.08.035http://cds.cern.ch/record/2308095engFraser, SeanHektor, AndiHütsi, GertKannike, KristjanMarzo, CarloMarzola, LucaSpethmann, ChristianRacioppi, AntonioRaidal, MarttiVaskonen, VilleVeermäe, HardiThe EDGES 21 cm Anomaly and Properties of Dark Matterastro-ph.HEAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyThe recently claimed anomaly in the measurement of the 21 cm hydrogen absorption signal by EDGES at z∼17 , if cosmological, requires the existence of new physics. The possible attempts to resolve the anomaly rely on either (i) cooling the hydrogen gas via new dark matter-hydrogen interactions or (ii) modifying the soft photon background beyond the standard CMB one, as possibly suggested also by the ARCADE 2 excess. We argue that solutions belonging to the first class are generally in tension with cosmological dark matter probes once simple dark sector models are considered. Therefore, we propose soft photon emission by light dark matter as a natural solution to the 21 cm anomaly, studying a few realizations of this scenario. We find that the signal singles out a photophilic dark matter candidate characterised by an enhanced collective decay mechanism, such as axion mini-clusters.The recently claimed anomaly in the measurement of the 21 cm hydrogen absorption signal by EDGES at $z\sim 17$, if cosmological, requires the existence of new physics. The possible attempts to resolve the anomaly rely on either (i) cooling the hydrogen gas via new dark matter-hydrogen interactions or (ii) modifying the soft photon background beyond the standard CMB one, as possibly suggested also by the ARCADE~2 excess. We argue that solutions belonging to the first class are generally in tension with cosmological dark matter probes once simple dark sector models are considered. Therefore, we propose soft photon emission by light dark matter as a natural solution to the 21 cm anomaly, studying a few realizations of this scenario. We find that the signal singles out a photophilic dark matter candidate characterised by an enhanced collective decay mechanism, such as axion mini-clusters.arXiv:1803.03245CERN-TH-2018-053oai:cds.cern.ch:23080952018-03-08
spellingShingle astro-ph.HE
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Fraser, Sean
Hektor, Andi
Hütsi, Gert
Kannike, Kristjan
Marzo, Carlo
Marzola, Luca
Spethmann, Christian
Racioppi, Antonio
Raidal, Martti
Vaskonen, Ville
Veermäe, Hardi
The EDGES 21 cm Anomaly and Properties of Dark Matter
title The EDGES 21 cm Anomaly and Properties of Dark Matter
title_full The EDGES 21 cm Anomaly and Properties of Dark Matter
title_fullStr The EDGES 21 cm Anomaly and Properties of Dark Matter
title_full_unstemmed The EDGES 21 cm Anomaly and Properties of Dark Matter
title_short The EDGES 21 cm Anomaly and Properties of Dark Matter
title_sort edges 21 cm anomaly and properties of dark matter
topic astro-ph.HE
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.physletb.2018.08.035
http://cds.cern.ch/record/2308095
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