Heavy neutral leptons in effective field theory and the high-luminosity LHC

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作者
Giovanna Cottin
Juan Carlos Helo
Martin Hirsch
Arsenii Titov
Zeren Simon Wang
机构
[1] Universidad Adolfo Ibáñez,Departamento de Ciencias, Facultad de Artes Liberales
[2] Millennium Institute for Subatomic Physics at High Energy Frontier (SAPHIR),Departamento de Física, Facultad de Ciencias
[3] Universidad de La Serena,Department of Physics
[4] AHEP Group,Center for Theory and Computation
[5] Instituto de Física Corpuscular — CSIC/Universitat de València,undefined
[6] Departament de Física Teòrica,undefined
[7] Universitat de València,undefined
[8] Instituto de Física Corpuscular — CSIC/Universitat de València,undefined
[9] National Tsing Hua University,undefined
[10] National Tsing Hua University,undefined
关键词
Beyond Standard Model; Effective Field Theories; Neutrino Physics;
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摘要
Heavy neutral leptons (HNLs) with masses around the electroweak scale are expected to be rather long-lived particles, as a result of the observed smallness of the active neutrino masses. In this work, we study long-lived HNLs in NRSMEFT, a Standard Model (SM) extension with singlet fermions to which we add non-renormalizable operators up to dimension-6. Operators which contain two HNLs can lead to a sizable enhancement of the production cross sections, compared to the minimal case where HNLs are produced only via their mixing with the SM neutrinos. We calculate the expected sensitivities for the ATLAS detector and the future far-detector experiments: AL3X, ANUBIS, CODEX-b, FASER, MATHUSLA, and MoEDAL-MAPP in this setup. The sensitive ranges of the HNL mass and of the active-heavy mixing angle are much larger than those in the minimal case. We study both, Dirac and Majorana, HNLs and discuss how the two cases actually differ phenomenologically, for HNL masses above roughly 100 GeV.
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