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SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties

SHiP (Search for Hidden Particles) is a newly designed fixed target facility, proposed at the CERN SPS accelerator, with the aim of complementing searches for New Physics at LHC by searching for light long-lived exotic particles with masses below a few GeV/c2. The sensitivity to Heavy Neutrinos will...

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Autor principal: De Serio, Marilisa
Publicado: 2016
Materias:
Acceso en línea:http://cds.cern.ch/record/2129501
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author De Serio, Marilisa
author_facet De Serio, Marilisa
author_sort De Serio, Marilisa
collection CERN
description SHiP (Search for Hidden Particles) is a newly designed fixed target facility, proposed at the CERN SPS accelerator, with the aim of complementing searches for New Physics at LHC by searching for light long-lived exotic particles with masses below a few GeV/c2. The sensitivity to Heavy Neutrinos will allow for the first time probing a region of the parameter space where Baryogenesis and active neutrino masses and oscillation could also be explained. A dedicated detector, based on OPERA-like bricks, will provide the first observation of the tau anti-neutrino. Moreover, $\nu_\tau$ and $\bar{\nu_\tau}$ cross-sections will be measured with a statistics 1000 times larger than currently available data and will allow extracting the F4 and F5 structure functions, never measured so far. Charm physics studies will be performed with signicantly improved accuracy with respect to past experiments.
id cern-2129501
institution Organización Europea para la Investigación Nuclear
publishDate 2016
record_format invenio
spelling cern-21295012019-09-30T06:29:59Zhttp://cds.cern.ch/record/2129501De Serio, MarilisaSHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ propertiesParticle Physics - ExperimentSHiP (Search for Hidden Particles) is a newly designed fixed target facility, proposed at the CERN SPS accelerator, with the aim of complementing searches for New Physics at LHC by searching for light long-lived exotic particles with masses below a few GeV/c2. The sensitivity to Heavy Neutrinos will allow for the first time probing a region of the parameter space where Baryogenesis and active neutrino masses and oscillation could also be explained. A dedicated detector, based on OPERA-like bricks, will provide the first observation of the tau anti-neutrino. Moreover, $\nu_\tau$ and $\bar{\nu_\tau}$ cross-sections will be measured with a statistics 1000 times larger than currently available data and will allow extracting the F4 and F5 structure functions, never measured so far. Charm physics studies will be performed with signicantly improved accuracy with respect to past experiments.CERN-SHiP-PROC-2016-005oai:cds.cern.ch:21295012016
spellingShingle Particle Physics - Experiment
De Serio, Marilisa
SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title_full SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title_fullStr SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title_full_unstemmed SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title_short SHiP: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
title_sort ship: a new facility to search for heavy neutrinos and study $\nu_\tau$ properties
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2129501
work_keys_str_mv AT deseriomarilisa shipanewfacilitytosearchforheavyneutrinosandstudynutauproperties