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Synergy between cosmological and laboratory searches in neutrino physics

The intersection of the cosmic and neutrino frontiers is a rich field where much discovery space still remains. Neutrinos play a pivotal role in the hot big bang cosmology, influencing the dynamics of the universe over numerous decades in cosmological history. Recent studies have made tremendous pro...

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Autores principales: Gerbino, Martina, Grohs, Evan, Lattanzi, Massimiliano, Abazajian, Kevork N., Blinov, Nikita, Brinckmann, Thejs, Chen, Mu-Chun, Djurcic, Zelimir, Du, Peizhi, Escudero, Miguel, Hagstotz, Steffen, Kelly, Kevin J., Lorenz, Christiane S., Loverde, Marilena, Martínez-Miravé, Pablo, Mena, Olga, Meyers, Joel, Pettus, Walter C., Saviano, Ninetta, Suliga, Anna M., Takhistov, Volodymyr, Tórtola, Mariam, Valle, José W.F., Wallisch, Benjamin
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.dark.2023.101333
http://cds.cern.ch/record/2805415
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author Gerbino, Martina
Grohs, Evan
Lattanzi, Massimiliano
Abazajian, Kevork N.
Blinov, Nikita
Brinckmann, Thejs
Chen, Mu-Chun
Djurcic, Zelimir
Du, Peizhi
Escudero, Miguel
Hagstotz, Steffen
Kelly, Kevin J.
Lorenz, Christiane S.
Loverde, Marilena
Martínez-Miravé, Pablo
Mena, Olga
Meyers, Joel
Pettus, Walter C.
Saviano, Ninetta
Suliga, Anna M.
Takhistov, Volodymyr
Tórtola, Mariam
Valle, José W.F.
Wallisch, Benjamin
author_facet Gerbino, Martina
Grohs, Evan
Lattanzi, Massimiliano
Abazajian, Kevork N.
Blinov, Nikita
Brinckmann, Thejs
Chen, Mu-Chun
Djurcic, Zelimir
Du, Peizhi
Escudero, Miguel
Hagstotz, Steffen
Kelly, Kevin J.
Lorenz, Christiane S.
Loverde, Marilena
Martínez-Miravé, Pablo
Mena, Olga
Meyers, Joel
Pettus, Walter C.
Saviano, Ninetta
Suliga, Anna M.
Takhistov, Volodymyr
Tórtola, Mariam
Valle, José W.F.
Wallisch, Benjamin
author_sort Gerbino, Martina
collection CERN
description The intersection of the cosmic and neutrino frontiers is a rich field where much discovery space still remains. Neutrinos play a pivotal role in the hot big bang cosmology, influencing the dynamics of the universe over numerous decades in cosmological history. Recent studies have made tremendous progress in understanding some properties of cosmological neutrinos, primarily their energy density. Upcoming cosmological probes will measure the energy density of relativistic particles with higher precision, but could also start probing other properties of the neutrino spectra. When convolved with results from terrestrial experiments, cosmology can become even more acute at probing new physics related to neutrinos or even Beyond the Standard Model (BSM). Any discordance between laboratory and cosmological data sets may reveal new BSM physics and/or suggest alternative models of cosmology. We give examples of the intersection between terrestrial and cosmological probes in the neutrino sector, and briefly discuss the possibilities of what different laboratory experiments may see in conjunction with cosmological observatories.
id cern-2805415
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28054152023-10-17T02:07:06Zdoi:10.1016/j.dark.2023.101333http://cds.cern.ch/record/2805415engGerbino, MartinaGrohs, EvanLattanzi, MassimilianoAbazajian, Kevork N.Blinov, NikitaBrinckmann, ThejsChen, Mu-ChunDjurcic, ZelimirDu, PeizhiEscudero, MiguelHagstotz, SteffenKelly, Kevin J.Lorenz, Christiane S.Loverde, MarilenaMartínez-Miravé, PabloMena, OlgaMeyers, JoelPettus, Walter C.Saviano, NinettaSuliga, Anna M.Takhistov, VolodymyrTórtola, MariamValle, José W.F.Wallisch, BenjaminSynergy between cosmological and laboratory searches in neutrino physicsastro-ph.COAstrophysics and Astronomyhep-phParticle Physics - PhenomenologyThe intersection of the cosmic and neutrino frontiers is a rich field where much discovery space still remains. Neutrinos play a pivotal role in the hot big bang cosmology, influencing the dynamics of the universe over numerous decades in cosmological history. Recent studies have made tremendous progress in understanding some properties of cosmological neutrinos, primarily their energy density. Upcoming cosmological probes will measure the energy density of relativistic particles with higher precision, but could also start probing other properties of the neutrino spectra. When convolved with results from terrestrial experiments, cosmology can become even more acute at probing new physics related to neutrinos or even Beyond the Standard Model (BSM). Any discordance between laboratory and cosmological data sets may reveal new BSM physics and/or suggest alternative models of cosmology. We give examples of the intersection between terrestrial and cosmological probes in the neutrino sector, and briefly discuss the possibilities of what different laboratory experiments may see in conjunction with cosmological observatories.The intersection of the cosmic and neutrino frontiers is a rich field where much discovery space still remains. Neutrinos play a pivotal role in the hot big bang cosmology, influencing the dynamics of the universe over numerous decades in cosmological history. Recent studies have made tremendous progress in understanding some properties of cosmological neutrinos, primarily their energy density. Upcoming cosmological probes will give higher precision on the energy density, but could also start probing other properties of the neutrino spectra. When convolved with results from terrestrial experiments, cosmology can become even more acute at probing new physics related to neutrinos or even Beyond the Standard Model (BSM). Any discordance between laboratory and cosmological data sets may reveal new BSM physics or suggest alternative models of cosmology. We give examples of the intersection between terrestrial and cosmological probes in the neutrino sector, and briefly discuss the possibilities of what different experiments may see in conjunction with cosmological observatories.arXiv:2203.07377FERMILAB-PUB-22-207-Voai:cds.cern.ch:28054152022-03-14
spellingShingle astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
Gerbino, Martina
Grohs, Evan
Lattanzi, Massimiliano
Abazajian, Kevork N.
Blinov, Nikita
Brinckmann, Thejs
Chen, Mu-Chun
Djurcic, Zelimir
Du, Peizhi
Escudero, Miguel
Hagstotz, Steffen
Kelly, Kevin J.
Lorenz, Christiane S.
Loverde, Marilena
Martínez-Miravé, Pablo
Mena, Olga
Meyers, Joel
Pettus, Walter C.
Saviano, Ninetta
Suliga, Anna M.
Takhistov, Volodymyr
Tórtola, Mariam
Valle, José W.F.
Wallisch, Benjamin
Synergy between cosmological and laboratory searches in neutrino physics
title Synergy between cosmological and laboratory searches in neutrino physics
title_full Synergy between cosmological and laboratory searches in neutrino physics
title_fullStr Synergy between cosmological and laboratory searches in neutrino physics
title_full_unstemmed Synergy between cosmological and laboratory searches in neutrino physics
title_short Synergy between cosmological and laboratory searches in neutrino physics
title_sort synergy between cosmological and laboratory searches in neutrino physics
topic astro-ph.CO
Astrophysics and Astronomy
hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1016/j.dark.2023.101333
http://cds.cern.ch/record/2805415
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