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Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation

Compared to $\mu \to e \gamma$ and $\mu \to e e e$, the process $\mu \to e$ conversion in nuclei receives enhanced contributions from Higgs-induced lepton flavor violation. Upcoming $\mu \to e$ conversion experiments with drastically increased sensitivity will be able to put extremely stringent boun...

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Autores principales: Crivellin, Andreas, Hoferichter, Martin, Procura, Massimiliano
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevD.89.093024
http://cds.cern.ch/record/1698956
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author Crivellin, Andreas
Hoferichter, Martin
Procura, Massimiliano
author_facet Crivellin, Andreas
Hoferichter, Martin
Procura, Massimiliano
author_sort Crivellin, Andreas
collection CERN
description Compared to $\mu \to e \gamma$ and $\mu \to e e e$, the process $\mu \to e$ conversion in nuclei receives enhanced contributions from Higgs-induced lepton flavor violation. Upcoming $\mu \to e$ conversion experiments with drastically increased sensitivity will be able to put extremely stringent bounds on Higgs-mediated $\mu \to e$ transitions. We point out that the theoretical uncertainties associated with these Higgs effects, encoded in the couplings of quark scalar operators to the nucleon, can be accurately assessed using our recently developed approach based on $SU(2)$ Chiral Perturbation Theory that cleanly separates two- and three-flavor observables. We emphasize that with input from lattice QCD for the coupling to strangeness $f_s^N$, hadronic uncertainties are appreciably reduced compared to the traditional approach where $f_s^N$ is determined from the pion--nucleon $\sigma$-term by means of an $SU(3)$ relation. We illustrate this point by considering Higgs-mediated lepton flavor violation in the Standard Model supplemented with higher-dimensional operators, the two-Higgs-doublet model with generic Yukawa couplings, and the Minimal Supersymmetric Standard Model. Furthermore, we compare bounds from present and future $\mu \to e$ conversion and $\mu \to e \gamma$ experiments.
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spelling cern-16989562019-09-30T06:29:59Zdoi:10.1103/PhysRevD.89.093024http://cds.cern.ch/record/1698956engCrivellin, AndreasHoferichter, MartinProcura, MassimilianoImproved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violationParticle Physics - PhenomenologyCompared to $\mu \to e \gamma$ and $\mu \to e e e$, the process $\mu \to e$ conversion in nuclei receives enhanced contributions from Higgs-induced lepton flavor violation. Upcoming $\mu \to e$ conversion experiments with drastically increased sensitivity will be able to put extremely stringent bounds on Higgs-mediated $\mu \to e$ transitions. We point out that the theoretical uncertainties associated with these Higgs effects, encoded in the couplings of quark scalar operators to the nucleon, can be accurately assessed using our recently developed approach based on $SU(2)$ Chiral Perturbation Theory that cleanly separates two- and three-flavor observables. We emphasize that with input from lattice QCD for the coupling to strangeness $f_s^N$, hadronic uncertainties are appreciably reduced compared to the traditional approach where $f_s^N$ is determined from the pion--nucleon $\sigma$-term by means of an $SU(3)$ relation. We illustrate this point by considering Higgs-mediated lepton flavor violation in the Standard Model supplemented with higher-dimensional operators, the two-Higgs-doublet model with generic Yukawa couplings, and the Minimal Supersymmetric Standard Model. Furthermore, we compare bounds from present and future $\mu \to e$ conversion and $\mu \to e \gamma$ experiments.arXiv:1404.7134CERN-PH-TH-2014-068oai:cds.cern.ch:16989562014-04-28
spellingShingle Particle Physics - Phenomenology
Crivellin, Andreas
Hoferichter, Martin
Procura, Massimiliano
Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title_full Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title_fullStr Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title_full_unstemmed Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title_short Improved predictions for $\mu\to e$ conversion in nuclei and Higgs-induced lepton flavor violation
title_sort improved predictions for $\mu\to e$ conversion in nuclei and higgs-induced lepton flavor violation
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1103/PhysRevD.89.093024
http://cds.cern.ch/record/1698956
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AT hoferichtermartin improvedpredictionsformutoeconversioninnucleiandhiggsinducedleptonflavorviolation
AT procuramassimiliano improvedpredictionsformutoeconversioninnucleiandhiggsinducedleptonflavorviolation