Neutrinos as background and signal in searches using the Migdal effect

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1. Verfasser: Maity, Tarak Nath
Format: Preprint
Veröffentlicht: 2024
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author Maity, Tarak Nath
author_facet Maity, Tarak Nath
contents Ionization or excitation resulting from the noninstantaneous response of the electron cloud to nuclear recoil is known as the Migdal effect. Dark matter searches utilizing this process set the most stringent bounds on the spin-independent dark matter-nucleon scattering cross section over a large region of the sub-GeV dark matter parameter space, underscoring its significance in dark matter detection. In this paper, we quantify the regions of dark matter parameter space that are challenging to probe via the Migdal effect due to the presence of dominant solar neutrino backgrounds for both liquid noble and semiconductor targets. Our findings reveal that there is no hard floor in the dark matter parameter space. Instead, we map the so-called neutrino fog. In mapping the neutrino fog, we identify the importance of incorporating the Migdal effect induced by neutrinos, as well as neutrino-electron scattering and dominant coherent neutrino-nucleus scattering, particularly for semiconductor targets. Furthermore, we demonstrate that a large portion of the relic density allowed parameter space lies within the neutrino fog. Finally, we estimate the exposure required to detect neutrino-induced Migdal events in direct detection experiments.
format Preprint
id arxiv_https___arxiv_org_abs_2412_17649
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Neutrinos as background and signal in searches using the Migdal effect
Maity, Tarak Nath
High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
High Energy Physics - Experiment
Ionization or excitation resulting from the noninstantaneous response of the electron cloud to nuclear recoil is known as the Migdal effect. Dark matter searches utilizing this process set the most stringent bounds on the spin-independent dark matter-nucleon scattering cross section over a large region of the sub-GeV dark matter parameter space, underscoring its significance in dark matter detection. In this paper, we quantify the regions of dark matter parameter space that are challenging to probe via the Migdal effect due to the presence of dominant solar neutrino backgrounds for both liquid noble and semiconductor targets. Our findings reveal that there is no hard floor in the dark matter parameter space. Instead, we map the so-called neutrino fog. In mapping the neutrino fog, we identify the importance of incorporating the Migdal effect induced by neutrinos, as well as neutrino-electron scattering and dominant coherent neutrino-nucleus scattering, particularly for semiconductor targets. Furthermore, we demonstrate that a large portion of the relic density allowed parameter space lies within the neutrino fog. Finally, we estimate the exposure required to detect neutrino-induced Migdal events in direct detection experiments.
title Neutrinos as background and signal in searches using the Migdal effect
topic High Energy Physics - Phenomenology
Cosmology and Nongalactic Astrophysics
Solar and Stellar Astrophysics
High Energy Physics - Experiment
url https://arxiv.org/abs/2412.17649