Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model

A gauged U(1)X extension of the Standard Model is a simple and consistent framework to naturally incorporate three right-handed neutrinos (RHNs) for generating the observed light neutrino masses and mixing by the type-I seesaw mechanism. We examine the collider testability of the U(1)X model, both i...

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Main Authors: Arindam Das, P.S. Bhupal Dev, Nobuchika Okada
Format: Article
Language:English
Published: Elsevier 2019-12-01
Series:Physics Letters B
Online Access:http://www.sciencedirect.com/science/article/pii/S0370269319307749
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spelling doaj-2af84e126c0f4b5d93cbb7691774def12020-11-24T22:05:44ZengElsevierPhysics Letters B0370-26932019-12-01799Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X modelArindam Das0P.S. Bhupal Dev1Nobuchika Okada2Department of Physics, Osaka University, Toyonaka, Osaka 560-0043, JapanDepartment of Physics and McDonnell Center for the Space Sciences, Washington University, St. Louis, MO 63130, USA; Theoretical Physics Department, Fermi National Accelerator Laboratory, P.O. Box 500, Batavia, IL 60510, USA; Corresponding author.Department of Physics and Astronomy, University of Alabama, Tuscaloosa, AL 35487, USAA gauged U(1)X extension of the Standard Model is a simple and consistent framework to naturally incorporate three right-handed neutrinos (RHNs) for generating the observed light neutrino masses and mixing by the type-I seesaw mechanism. We examine the collider testability of the U(1)X model, both in its minimal form with the conventional charges, as well as with an alternative charge assignment, via the resonant production of the U(1)X gauge boson (Z′) and its subsequent decay into a pair of RHNs. We first derive an updated upper limit on the new gauge coupling gX as a function of the Z′-boson mass from the latest LHC dilepton searches. Then we identify the maximum possible cross section for the RHN pair-production under these constraints. Finally, we investigate the possibility of having one of the RHNs long-lived, even for a TeV-scale mass. Employing the general parametrization for the light neutrino mass matrix to reproduce the observed neutrino oscillation data, we perform a parameter scan and find a simple formula for the maximum RHN lifetime as a function of the lightest neutrino mass eigenvalue (mlightest). We find that for mlightest≲10−5 eV, one of the RHNs in the minimal U(1)X scenario can be long-lived with a displaced-vertex signature which can be searched for at the LHC and/or with a dedicated long-lived particle detector, such as MATHUSLA. In other words, once a long-lived RHN is observed, we can set an upper bound on the lightest neutrino mass in this model.http://www.sciencedirect.com/science/article/pii/S0370269319307749
collection DOAJ
language English
format Article
sources DOAJ
author Arindam Das
P.S. Bhupal Dev
Nobuchika Okada
spellingShingle Arindam Das
P.S. Bhupal Dev
Nobuchika Okada
Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
Physics Letters B
author_facet Arindam Das
P.S. Bhupal Dev
Nobuchika Okada
author_sort Arindam Das
title Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
title_short Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
title_full Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
title_fullStr Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
title_full_unstemmed Long-lived TeV-scale right-handed neutrino production at the LHC in gauged U(1)X model
title_sort long-lived tev-scale right-handed neutrino production at the lhc in gauged u(1)x model
publisher Elsevier
series Physics Letters B
issn 0370-2693
publishDate 2019-12-01
description A gauged U(1)X extension of the Standard Model is a simple and consistent framework to naturally incorporate three right-handed neutrinos (RHNs) for generating the observed light neutrino masses and mixing by the type-I seesaw mechanism. We examine the collider testability of the U(1)X model, both in its minimal form with the conventional charges, as well as with an alternative charge assignment, via the resonant production of the U(1)X gauge boson (Z′) and its subsequent decay into a pair of RHNs. We first derive an updated upper limit on the new gauge coupling gX as a function of the Z′-boson mass from the latest LHC dilepton searches. Then we identify the maximum possible cross section for the RHN pair-production under these constraints. Finally, we investigate the possibility of having one of the RHNs long-lived, even for a TeV-scale mass. Employing the general parametrization for the light neutrino mass matrix to reproduce the observed neutrino oscillation data, we perform a parameter scan and find a simple formula for the maximum RHN lifetime as a function of the lightest neutrino mass eigenvalue (mlightest). We find that for mlightest≲10−5 eV, one of the RHNs in the minimal U(1)X scenario can be long-lived with a displaced-vertex signature which can be searched for at the LHC and/or with a dedicated long-lived particle detector, such as MATHUSLA. In other words, once a long-lived RHN is observed, we can set an upper bound on the lightest neutrino mass in this model.
url http://www.sciencedirect.com/science/article/pii/S0370269319307749
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