ALP-mediated Dark Matter-Nucleon Scattering

Fuente: arXiv
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Autori principali: Beenakker, Wim, Mikkers, Daniël, Phan, Anh Vu, Westhoff, Susanne
Natura: Preprint
Pubblicazione: 2025
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author Beenakker, Wim
Mikkers, Daniël
Phan, Anh Vu
Westhoff, Susanne
author_facet Beenakker, Wim
Mikkers, Daniël
Phan, Anh Vu
Westhoff, Susanne
contents We perform a comprehensive analysis of dark matter-nucleon scattering via the exchange of axion-like particles (ALPs). At first sight, this might appear of little practical use, as non-relativistic scattering through pseudo-scalar interactions is momentum-suppressed and spin-dependent, resulting in scattering rates below any experimental sensitivity. We show that the scattering rate can be drastically enhanced in two ways. First, light ALPs with masses below the typical momentum transfer at direct detection experiments lift the momentum suppression by acting as essentially massless mediators. Second, ALP exchange through loops induces coherent spin-independent scattering. If the ALP has flavor-changing couplings to up-type quarks, loop-induced scattering receives an extra strong enhancement by the top-quark mass. We deduce that, contrary to common lore, XENONnT and PandaX-4T are already sensitive to ALP-mediated dark matter-nucleon scattering. The next generation of direct detection experiments will probe far into the parameter space of the ALP effective theory, potentially exceeding the sensitivity of collider searches.
format Preprint
id arxiv_https___arxiv_org_abs_2511_19619
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle ALP-mediated Dark Matter-Nucleon Scattering
Beenakker, Wim
Mikkers, Daniël
Phan, Anh Vu
Westhoff, Susanne
High Energy Physics - Phenomenology
High Energy Physics - Experiment
We perform a comprehensive analysis of dark matter-nucleon scattering via the exchange of axion-like particles (ALPs). At first sight, this might appear of little practical use, as non-relativistic scattering through pseudo-scalar interactions is momentum-suppressed and spin-dependent, resulting in scattering rates below any experimental sensitivity. We show that the scattering rate can be drastically enhanced in two ways. First, light ALPs with masses below the typical momentum transfer at direct detection experiments lift the momentum suppression by acting as essentially massless mediators. Second, ALP exchange through loops induces coherent spin-independent scattering. If the ALP has flavor-changing couplings to up-type quarks, loop-induced scattering receives an extra strong enhancement by the top-quark mass. We deduce that, contrary to common lore, XENONnT and PandaX-4T are already sensitive to ALP-mediated dark matter-nucleon scattering. The next generation of direct detection experiments will probe far into the parameter space of the ALP effective theory, potentially exceeding the sensitivity of collider searches.
title ALP-mediated Dark Matter-Nucleon Scattering
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2511.19619