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Main Authors: Frigerio, Michele, Vignaroli, Natascia
Format: Preprint
Udgivet: 2024
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Online adgang:https://arxiv.org/abs/2409.02721
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author Frigerio, Michele
Vignaroli, Natascia
author_facet Frigerio, Michele
Vignaroli, Natascia
contents Majorana neutrinos may have transitional dipole moments, which violate lepton number as well as lepton flavour. We estimate the sensitivity of future colliders to the electron-muon neutrino dipole moment, $λ_{eμ}$, by considering same-sign dilepton final states. We find that hadron colliders, even the proposed FCC-hh, are sensitive only to $|λ_{eμ}|\gtrsim 10^{-9}μ_B$ (with $μ_B$ the Bohr magneton), a value two-three orders of magnitude larger than current bounds from astrophysics and low-energy neutrino-scattering experiments. In the case of a future muon collider, we show that the sensitivity varies from $|λ_{eμ}|\sim 5\cdot 10^{-9}μ_B$ for energy $\sqrt{s}\simeq 3$ TeV, to $\sim 10^{-12}μ_B$ for $\sqrt{s}\simeq 50$ TeV, matching the current laboratory bounds for $\sqrt{s}\simeq 30$ TeV. The singular advantage of the muon collider signal would be a direct, clean identification of lepton number and flavour violation. We also show that a muon collider would improve by orders of magnitude the direct bounds on $m_{eμ}$ and $m_{μμ}$, two of the entries of the Majorana neutrino mass matrix. These bounds could be as strong as $\sim 50$ keV, still far above the neutrino mass scale.
format Preprint
id arxiv_https___arxiv_org_abs_2409_02721
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Muon collider probes of Majorana neutrino dipole moments and masses
Frigerio, Michele
Vignaroli, Natascia
High Energy Physics - Phenomenology
Solar and Stellar Astrophysics
High Energy Physics - Experiment
Majorana neutrinos may have transitional dipole moments, which violate lepton number as well as lepton flavour. We estimate the sensitivity of future colliders to the electron-muon neutrino dipole moment, $λ_{eμ}$, by considering same-sign dilepton final states. We find that hadron colliders, even the proposed FCC-hh, are sensitive only to $|λ_{eμ}|\gtrsim 10^{-9}μ_B$ (with $μ_B$ the Bohr magneton), a value two-three orders of magnitude larger than current bounds from astrophysics and low-energy neutrino-scattering experiments. In the case of a future muon collider, we show that the sensitivity varies from $|λ_{eμ}|\sim 5\cdot 10^{-9}μ_B$ for energy $\sqrt{s}\simeq 3$ TeV, to $\sim 10^{-12}μ_B$ for $\sqrt{s}\simeq 50$ TeV, matching the current laboratory bounds for $\sqrt{s}\simeq 30$ TeV. The singular advantage of the muon collider signal would be a direct, clean identification of lepton number and flavour violation. We also show that a muon collider would improve by orders of magnitude the direct bounds on $m_{eμ}$ and $m_{μμ}$, two of the entries of the Majorana neutrino mass matrix. These bounds could be as strong as $\sim 50$ keV, still far above the neutrino mass scale.
title Muon collider probes of Majorana neutrino dipole moments and masses
topic High Energy Physics - Phenomenology
Solar and Stellar Astrophysics
High Energy Physics - Experiment
url https://arxiv.org/abs/2409.02721