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Closing the window for compressed Dark Sectors with disappearing charged tracks

We investigate the sensitivity at current and future hadron colliders to a heavy electrically-charged particle with a proper decay length below a centimetre, whose decay products are invisible due to below-threshold energies and/or small couplings to the Standard Model. A cosmologically-motivated ex...

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Detalles Bibliográficos
Autores principales: Mahbubani, Rakhi, Schwaller, Pedro, Zurita, Jose
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP06(2017)119
https://dx.doi.org/10.1007/JHEP10(2017)061
http://cds.cern.ch/record/2259331
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author Mahbubani, Rakhi
Schwaller, Pedro
Zurita, Jose
author_facet Mahbubani, Rakhi
Schwaller, Pedro
Zurita, Jose
author_sort Mahbubani, Rakhi
collection CERN
description We investigate the sensitivity at current and future hadron colliders to a heavy electrically-charged particle with a proper decay length below a centimetre, whose decay products are invisible due to below-threshold energies and/or small couplings to the Standard Model. A cosmologically-motivated example of a framework that contains such a particle is the Minimal Supersymmetric Standard Model in the limit of pure Higgsinos. The current hadron-collider search strategy has no sensitivity to the upper range of pure-Higgsino masses that are consistent with the thermal relic density, even at a future collider with 100 TeV centre-of-mass energy. We show that performing a disappearing track search within the inner 10 cm of detector volume would improve the reach in lifetime by a factor of 3 at the 14 TeV LHC and a further factor of 5 at a 100 TeV collider, resulting in around 10 events for 1.1 TeV thermal Higgsinos. In order to include the particles with the largest boost in the analysis, we furthermore propose a purely track-based search in both the central and forward regions, each of which would increase the number of events by another factor of 5, improving our reach at small lifetimes. This would allow us to definitively discover or exclude the experimentally-elusive pure-Higgsino thermal relic at a 100 TeV collider. Our results illustrate the importance of varying detector design when assessing the reach of future high energy colliders.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling cern-22593312021-11-13T11:52:27Zdoi:10.1007/JHEP06(2017)119doi:10.1007/JHEP10(2017)061http://cds.cern.ch/record/2259331engMahbubani, RakhiSchwaller, PedroZurita, JoseClosing the window for compressed Dark Sectors with disappearing charged trackshep-phParticle Physics - PhenomenologyWe investigate the sensitivity at current and future hadron colliders to a heavy electrically-charged particle with a proper decay length below a centimetre, whose decay products are invisible due to below-threshold energies and/or small couplings to the Standard Model. A cosmologically-motivated example of a framework that contains such a particle is the Minimal Supersymmetric Standard Model in the limit of pure Higgsinos. The current hadron-collider search strategy has no sensitivity to the upper range of pure-Higgsino masses that are consistent with the thermal relic density, even at a future collider with 100 TeV centre-of-mass energy. We show that performing a disappearing track search within the inner 10 cm of detector volume would improve the reach in lifetime by a factor of 3 at the 14 TeV LHC and a further factor of 5 at a 100 TeV collider, resulting in around 10 events for 1.1 TeV thermal Higgsinos. In order to include the particles with the largest boost in the analysis, we furthermore propose a purely track-based search in both the central and forward regions, each of which would increase the number of events by another factor of 5, improving our reach at small lifetimes. This would allow us to definitively discover or exclude the experimentally-elusive pure-Higgsino thermal relic at a 100 TeV collider. Our results illustrate the importance of varying detector design when assessing the reach of future high energy colliders.We investigate the sensitivity at current and future hadron colliders to a heavy electrically-charged particle with a proper decay length below a centimetre, whose decay products are invisible due to below-threshold energies and/or small couplings to the Standard Model. A cosmologically-motivated example of a framework that contains such a particle is the Minimal Supersymmetric Standard Model in the limit of pure Higgsinos. The current hadron-collider search strategy has no sensitivity to the upper range of pure Higgsino masses that are consistent with the thermal relic density, even at a future collider with 100 TeV centre-of-mass energy. We show that performing a disappearing track search within the inner 10 cm of detector volume would improve the reach in lifetime by a factor of 3 at the 14 TeV LHC and a further factor of 5 at a 100 TeV collider, resulting in around 10 events for 1.1 TeV thermal Higgsinos. In order to include the particles with the largest boost in the analysis, we furthermore propose a purely track-based search in both the central and forward regions, each of which would increase the number of events by another factor of 5, improving our reach at small lifetimes. This would allow us to definitively discover or exclude the experimentally-elusive pure-Higgsino thermal relic at a 100 TeV collider.arXiv:1703.05327CERN-TH-2017-054TTP17-005MITP/17-011oai:cds.cern.ch:22593312017-03-15
spellingShingle hep-ph
Particle Physics - Phenomenology
Mahbubani, Rakhi
Schwaller, Pedro
Zurita, Jose
Closing the window for compressed Dark Sectors with disappearing charged tracks
title Closing the window for compressed Dark Sectors with disappearing charged tracks
title_full Closing the window for compressed Dark Sectors with disappearing charged tracks
title_fullStr Closing the window for compressed Dark Sectors with disappearing charged tracks
title_full_unstemmed Closing the window for compressed Dark Sectors with disappearing charged tracks
title_short Closing the window for compressed Dark Sectors with disappearing charged tracks
title_sort closing the window for compressed dark sectors with disappearing charged tracks
topic hep-ph
Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP06(2017)119
https://dx.doi.org/10.1007/JHEP10(2017)061
http://cds.cern.ch/record/2259331
work_keys_str_mv AT mahbubanirakhi closingthewindowforcompresseddarksectorswithdisappearingchargedtracks
AT schwallerpedro closingthewindowforcompresseddarksectorswithdisappearingchargedtracks
AT zuritajose closingthewindowforcompresseddarksectorswithdisappearingchargedtracks