Search for light mediators in the low-energy data of the CONNIE reactor neutrino experiment

The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a 3.7 kg-day exposure using a CCD detector array sensitive to an \(\sim\)1 keV threshold for the study of coherent neutrino-nucleus elastic scattering. Here we demonstrate the pote...

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Main Authors Aguilar-Arevalo, Alexis, Bertou, Xavier, Bonifazi, Carla, Cancelo, Gustavo, Cervantes-Vergara, Brenda A, Chavez, Claudio, D'Olivo, Juan C, dos Anjos, João C, Estrada, Juan, Fernandes Neto, Aldo R, Fernandez-Moroni, Guillermo, Foguel, Ana, d, Richard, Izraelevitch, Federico, Kilminster, Ben, Lima, H P, Makler, Martin, Molina, Jorge, Mota, Philipe, Nasteva, Irina, Paolini, Eduardo, Romero, Carlos, Sarkis, Youssef, Sofo-Haro, Miguel, Tiffenberg, Javier, Torres, Christian
Format Paper Journal Article
LanguageEnglish
Published Ithaca Cornell University Library, arXiv.org 29.03.2020
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Abstract The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a 3.7 kg-day exposure using a CCD detector array sensitive to an \(\sim\)1 keV threshold for the study of coherent neutrino-nucleus elastic scattering. Here we demonstrate the potential of this low-energy neutrino experiment as a probe for physics Beyond the Standard Model, by using the recently published results to constrain two simplified extensions of the Standard Model with light mediators. We compare the new limits with those obtained for the same models using neutrinos from the Spallation Neutron Source. Our new constraints represent the best limits for these simplified models among the experiments searching for CE\(\nu\)NS for a light vector mediator with mass \(M_{Z^{\prime}}<\) 10 MeV, and for a light scalar mediator with mass \(M_{\phi}<\) 30 MeV. These results constitute the first use of the CONNIE data as a probe for physics Beyond the Standard Model.
AbstractList J. High Energ. Phys. 2020, 54 (2020) The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a 3.7 kg-day exposure using a CCD detector array sensitive to an $\sim$1 keV threshold for the study of coherent neutrino-nucleus elastic scattering. Here we demonstrate the potential of this low-energy neutrino experiment as a probe for physics Beyond the Standard Model, by using the recently published results to constrain two simplified extensions of the Standard Model with light mediators. We compare the new limits with those obtained for the same models using neutrinos from the Spallation Neutron Source. Our new constraints represent the best limits for these simplified models among the experiments searching for CE$\nu$NS for a light vector mediator with mass $M_{Z^{\prime}}<$ 10 MeV, and for a light scalar mediator with mass $M_{\phi}<$ 30 MeV. These results constitute the first use of the CONNIE data as a probe for physics Beyond the Standard Model.
The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a 3.7 kg-day exposure using a CCD detector array sensitive to an \(\sim\)1 keV threshold for the study of coherent neutrino-nucleus elastic scattering. Here we demonstrate the potential of this low-energy neutrino experiment as a probe for physics Beyond the Standard Model, by using the recently published results to constrain two simplified extensions of the Standard Model with light mediators. We compare the new limits with those obtained for the same models using neutrinos from the Spallation Neutron Source. Our new constraints represent the best limits for these simplified models among the experiments searching for CE\(\nu\)NS for a light vector mediator with mass \(M_{Z^{\prime}}<\) 10 MeV, and for a light scalar mediator with mass \(M_{\phi}<\) 30 MeV. These results constitute the first use of the CONNIE data as a probe for physics Beyond the Standard Model.
Author Cancelo, Gustavo
Bertou, Xavier
Lima, H P
Nasteva, Irina
Tiffenberg, Javier
Paolini, Eduardo
Sarkis, Youssef
Estrada, Juan
D'Olivo, Juan C
d, Richard
Molina, Jorge
Izraelevitch, Federico
Kilminster, Ben
Fernandez-Moroni, Guillermo
Chavez, Claudio
Makler, Martin
Sofo-Haro, Miguel
Foguel, Ana
Cervantes-Vergara, Brenda A
Torres, Christian
Aguilar-Arevalo, Alexis
Mota, Philipe
Romero, Carlos
Fernandes Neto, Aldo R
dos Anjos, João C
Bonifazi, Carla
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BackLink https://doi.org/10.1007/JHEP04(2020)054$$DView published paper (Access to full text may be restricted)
https://doi.org/10.48550/arXiv.1910.04951$$DView paper in arXiv
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Snippet The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a 3.7 kg-day exposure using a CCD...
J. High Energ. Phys. 2020, 54 (2020) The CONNIE experiment is located at a distance of 30 m from the core of a commercial nuclear reactor, and has collected a...
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SubjectTerms Coherent scattering
Elastic scattering
Experiments
Neutrinos
Neutrons
Nuclear energy
Nuclear reactors
Physics - High Energy Physics - Experiment
Physics - Instrumentation and Detectors
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