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Constraining light thermal inelastic dark matter with NA64
A vector portal between the Standard Model and the dark sector is a predictive and compelling framework for thermal dark matter. Through co-annihilations, models of inelastic dark matter (iDM) and inelastic Dirac dark matter (i2DM) can reproduce the observed relic density in the MeV to GeV mass rang...
Autores principales: | , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2023
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1140/epjc/s10052-023-11536-5 http://cds.cern.ch/record/2859788 |
_version_ | 1780977710379565056 |
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author | Mongillo, Martina Abdullahi, Asli Oberhauser, Benjamin Banto Crivelli, Paolo Hostert, Matheus Massaro, Daniele Bueno, Laura Molina Pascoli, Silvia |
author_facet | Mongillo, Martina Abdullahi, Asli Oberhauser, Benjamin Banto Crivelli, Paolo Hostert, Matheus Massaro, Daniele Bueno, Laura Molina Pascoli, Silvia |
author_sort | Mongillo, Martina |
collection | CERN |
description | A vector portal between the Standard Model and the dark sector is a predictive and compelling framework for thermal dark matter. Through co-annihilations, models of inelastic dark matter (iDM) and inelastic Dirac dark matter (i2DM) can reproduce the observed relic density in the MeV to GeV mass range without violating cosmological limits. In these scenarios, the vector mediator behaves like a semi-visible particle, evading traditional bounds on visible or invisible resonances, and uncovering new parameter space to explain the muon $(g-2)$ anomaly. By means of a more inclusive signal definition at the NA64 experiment, we place new constraints on iDM and i2DM using a missing energy technique. With a recast-based analysis, we contextualize the NA64 exclusion limits in parameter space and estimate the reach of the newly collected and expected future NA64 data. Our results motivate the development of an optimized search program for semi-visible particles, in which fixed-target experiments like NA64 provide a powerful probe in the sub-GeV mass range. |
id | cern-2859788 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2023 |
record_format | invenio |
spelling | cern-28597882023-09-10T02:37:34Zdoi:10.1140/epjc/s10052-023-11536-5http://cds.cern.ch/record/2859788engMongillo, MartinaAbdullahi, AsliOberhauser, Benjamin BantoCrivelli, PaoloHostert, MatheusMassaro, DanieleBueno, Laura MolinaPascoli, SilviaConstraining light thermal inelastic dark matter with NA64hep-exParticle Physics - Experimenthep-phParticle Physics - PhenomenologyA vector portal between the Standard Model and the dark sector is a predictive and compelling framework for thermal dark matter. Through co-annihilations, models of inelastic dark matter (iDM) and inelastic Dirac dark matter (i2DM) can reproduce the observed relic density in the MeV to GeV mass range without violating cosmological limits. In these scenarios, the vector mediator behaves like a semi-visible particle, evading traditional bounds on visible or invisible resonances, and uncovering new parameter space to explain the muon $(g-2)$ anomaly. By means of a more inclusive signal definition at the NA64 experiment, we place new constraints on iDM and i2DM using a missing energy technique. With a recast-based analysis, we contextualize the NA64 exclusion limits in parameter space and estimate the reach of the newly collected and expected future NA64 data. Our results motivate the development of an optimized search program for semi-visible particles, in which fixed-target experiments like NA64 provide a powerful probe in the sub-GeV mass range.A vector portal between the Standard Model and the dark sector is a predictive and compelling framework for thermal dark matter. Through co-annihilations, models of inelastic dark matter (iDM) and inelastic Dirac dark matter (i2DM) can reproduce the observed relic density in the MeV to GeV mass range without violating cosmological limits. In these scenarios, the vector mediator behaves like a semi-visible particle, evading traditional bounds on visible or invisible resonances, and uncovering new parameter space to explain the muon $(g-2)$ anomaly. By means of a more inclusive signal definition at the NA64 experiment, we place new constraints on iDM and i2DM using a missing energy technique. With a recast-based analysis, we contextualize the NA64 exclusion limits in parameter space and estimate the reach of the newly collected and expected future NA64 data. Our results motivate the development of an optimized search program for semi-visible particles, in which fixed-target experiments like NA64 provide a powerful probe in the sub-GeV mass range.arXiv:2302.05414IRMP-CP3-23-09FERMILAB-PUB-23-066-Toai:cds.cern.ch:28597882023-02-10 |
spellingShingle | hep-ex Particle Physics - Experiment hep-ph Particle Physics - Phenomenology Mongillo, Martina Abdullahi, Asli Oberhauser, Benjamin Banto Crivelli, Paolo Hostert, Matheus Massaro, Daniele Bueno, Laura Molina Pascoli, Silvia Constraining light thermal inelastic dark matter with NA64 |
title | Constraining light thermal inelastic dark matter with NA64 |
title_full | Constraining light thermal inelastic dark matter with NA64 |
title_fullStr | Constraining light thermal inelastic dark matter with NA64 |
title_full_unstemmed | Constraining light thermal inelastic dark matter with NA64 |
title_short | Constraining light thermal inelastic dark matter with NA64 |
title_sort | constraining light thermal inelastic dark matter with na64 |
topic | hep-ex Particle Physics - Experiment hep-ph Particle Physics - Phenomenology |
url | https://dx.doi.org/10.1140/epjc/s10052-023-11536-5 http://cds.cern.ch/record/2859788 |
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