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Search for New Physics via Baryon EDM at LHC

Permanent electric dipole moments (EDMs) of fundamental particles provide powerful probes for physics beyond the Standard Model. We propose to search for the EDM of strange and charm baryons at LHC, extending the ongoing experimental program on the neutron, muon, atoms, molecules and light nuclei. T...

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Detalles Bibliográficos
Autores principales: Henry, L., Marangotto, D., Merli, A., Neri, N., Ruiz, J., Martinez Vidal, F. 
Lenguaje:eng
Publicado: WSP 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1142/9789811207402_0028
http://cds.cern.ch/record/2782136
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author Henry, L.
Marangotto, D.
Merli, A.
Neri, N.
Ruiz, J.
Martinez Vidal, F. 
author_facet Henry, L.
Marangotto, D.
Merli, A.
Neri, N.
Ruiz, J.
Martinez Vidal, F. 
author_sort Henry, L.
collection CERN
description Permanent electric dipole moments (EDMs) of fundamental particles provide powerful probes for physics beyond the Standard Model. We propose to search for the EDM of strange and charm baryons at LHC, extending the ongoing experimental program on the neutron, muon, atoms, molecules and light nuclei. The EDM of strange $\Lambda$ baryons, selected from weak decays of charm baryons produced in pp collisions at LHC, can be determined by studying the spin precession in the magnetic field of the detector tracking system. A test of CPT symmetry can be performed by measuring the magnetic dipole moment of $\Lambda$ and $\overline{\Lambda}$ baryons. For short-lived $\Lambda_c^+$ and $\Xi_c^+$ baryons, to be produced in a fixed-target experiment using the 7 TeV LHC beam and channeled in a bent crystal, the spin precession is induced by the intense electromagnetic field between crystal atomic planes. The experimental layout based on the LHCb detector and the expected sensitivities in the coming years are discussed.
id cern-2782136
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
publisher WSP
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spelling cern-27821362021-12-17T09:02:00Zdoi:10.1142/9789811207402_0028http://cds.cern.ch/record/2782136engHenry, L.Marangotto, D.Merli, A.Neri, N.Ruiz, J.Martinez Vidal, F. Search for New Physics via Baryon EDM at LHChep-exParticle Physics - ExperimentPermanent electric dipole moments (EDMs) of fundamental particles provide powerful probes for physics beyond the Standard Model. We propose to search for the EDM of strange and charm baryons at LHC, extending the ongoing experimental program on the neutron, muon, atoms, molecules and light nuclei. The EDM of strange $\Lambda$ baryons, selected from weak decays of charm baryons produced in pp collisions at LHC, can be determined by studying the spin precession in the magnetic field of the detector tracking system. A test of CPT symmetry can be performed by measuring the magnetic dipole moment of $\Lambda$ and $\overline{\Lambda}$ baryons. For short-lived $\Lambda_c^+$ and $\Xi_c^+$ baryons, to be produced in a fixed-target experiment using the 7 TeV LHC beam and channeled in a bent crystal, the spin precession is induced by the intense electromagnetic field between crystal atomic planes. The experimental layout based on the LHCb detector and the expected sensitivities in the coming years are discussed.WSParXiv:2101.00928oai:cds.cern.ch:27821362020
spellingShingle hep-ex
Particle Physics - Experiment
Henry, L.
Marangotto, D.
Merli, A.
Neri, N.
Ruiz, J.
Martinez Vidal, F. 
Search for New Physics via Baryon EDM at LHC
title Search for New Physics via Baryon EDM at LHC
title_full Search for New Physics via Baryon EDM at LHC
title_fullStr Search for New Physics via Baryon EDM at LHC
title_full_unstemmed Search for New Physics via Baryon EDM at LHC
title_short Search for New Physics via Baryon EDM at LHC
title_sort search for new physics via baryon edm at lhc
topic hep-ex
Particle Physics - Experiment
url https://dx.doi.org/10.1142/9789811207402_0028
http://cds.cern.ch/record/2782136
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