Statistical Neutron Emission Model for Neutrino Nuclear Response

The studies of neutrino fundamental properties are widely investigated by double beta decay and inverse beta decay. Recent muon capture experiment provides promising ways to directly evaluate the neutrino nuclear responses. This study provides theoretical explanation for neutrino nuclear responses b...

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Main Authors: Hashim I.H., Ejiri H., Othman F., Saroni S.S., Amelia W.N., Hamzah S.A., Wei K.C.
Format: Article
Language:English
Published: EDP Sciences 2017-01-01
Series:EPJ Web of Conferences
Subjects:
Online Access:https://doi.org/10.1051/epjconf/201715600005
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author Hashim I.H.
Ejiri H.
Othman F.
Saroni S.S.
Amelia W.N.
Hamzah S.A.
Wei K.C.
author_facet Hashim I.H.
Ejiri H.
Othman F.
Saroni S.S.
Amelia W.N.
Hamzah S.A.
Wei K.C.
author_sort Hashim I.H.
collection DOAJ
description The studies of neutrino fundamental properties are widely investigated by double beta decay and inverse beta decay. Recent muon capture experiment provides promising ways to directly evaluate the neutrino nuclear responses. This study provides theoretical explanation for neutrino nuclear responses by muon capture experiment. The effects of muon binding energy towards nuclear excitation region and pre-equilibrium (PEQ) and equilibrium (EQ) neutron decay mode will be discussed. The interpretation of muon strength model by comparison of calculator output and recent experimental data may provide relevant information towards determination of nuclear matrix element (NME) and its missing parameter.
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spelling doaj.art-cc8b762bdc124bd888454d7a99e19aa22022-12-21T22:07:04ZengEDP SciencesEPJ Web of Conferences2100-014X2017-01-011560000510.1051/epjconf/201715600005epjconf_rcnp2017_00005Statistical Neutron Emission Model for Neutrino Nuclear ResponseHashim I.H.Ejiri H.Othman F.Saroni S.S.Amelia W.N.Hamzah S.A.Wei K.C.The studies of neutrino fundamental properties are widely investigated by double beta decay and inverse beta decay. Recent muon capture experiment provides promising ways to directly evaluate the neutrino nuclear responses. This study provides theoretical explanation for neutrino nuclear responses by muon capture experiment. The effects of muon binding energy towards nuclear excitation region and pre-equilibrium (PEQ) and equilibrium (EQ) neutron decay mode will be discussed. The interpretation of muon strength model by comparison of calculator output and recent experimental data may provide relevant information towards determination of nuclear matrix element (NME) and its missing parameter.https://doi.org/10.1051/epjconf/201715600005Neutron Emission ModelNeutrino Nuclear ResponseMuon Charge Exchange ReactionNuclear Matrix ElementMuon Capture Strength.
spellingShingle Hashim I.H.
Ejiri H.
Othman F.
Saroni S.S.
Amelia W.N.
Hamzah S.A.
Wei K.C.
Statistical Neutron Emission Model for Neutrino Nuclear Response
EPJ Web of Conferences
Neutron Emission Model
Neutrino Nuclear Response
Muon Charge Exchange Reaction
Nuclear Matrix Element
Muon Capture Strength.
title Statistical Neutron Emission Model for Neutrino Nuclear Response
title_full Statistical Neutron Emission Model for Neutrino Nuclear Response
title_fullStr Statistical Neutron Emission Model for Neutrino Nuclear Response
title_full_unstemmed Statistical Neutron Emission Model for Neutrino Nuclear Response
title_short Statistical Neutron Emission Model for Neutrino Nuclear Response
title_sort statistical neutron emission model for neutrino nuclear response
topic Neutron Emission Model
Neutrino Nuclear Response
Muon Charge Exchange Reaction
Nuclear Matrix Element
Muon Capture Strength.
url https://doi.org/10.1051/epjconf/201715600005
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AT ejirih statisticalneutronemissionmodelforneutrinonuclearresponse
AT othmanf statisticalneutronemissionmodelforneutrinonuclearresponse
AT saroniss statisticalneutronemissionmodelforneutrinonuclearresponse
AT ameliawn statisticalneutronemissionmodelforneutrinonuclearresponse
AT hamzahsa statisticalneutronemissionmodelforneutrinonuclearresponse
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