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The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks

We present a first study of the channel H, A -> tau+tau -> h+ + h- + X in CMS at high m(A) values where no triggering difficulties are expected with QCD jets. At present the tau selection is based solely on the presence of a hard isolated track in the "tau" jet, but further refinemen...

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Detalles Bibliográficos
Autores principales: Kinnunen, R., Denegri, D.
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/687145
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author Kinnunen, R.
Denegri, D.
author_facet Kinnunen, R.
Denegri, D.
author_sort Kinnunen, R.
collection CERN
description We present a first study of the channel H, A -> tau+tau -> h+ + h- + X in CMS at high m(A) values where no triggering difficulties are expected with QCD jets. At present the tau selection is based solely on the presence of a hard isolated track in the "tau" jet, but further refinements based on calorimeter collimation or impact parameter selections are obviously possible. The main irreducible background in these conditions is due to QCD jets with hard fragmentations. A large reduction of this background and improvement in the expected signal to background ratio is provided by Etmiss cuts. The expected high-mass reach in the m(A) tan(beta) parameter space for 3 x 10**4pb**-1 is shown. This H -> tau+tau channel provides the highest mass reach and the best mass resolution when compared to tau,tau -> lepton+hadron + Xand tau,tau -> electton + muon + X final states. To the extent that with further calorimetric and impact parameter based selection criteria the QCD background can be kept under control, i.e. below the irreducible Z,gamma* -> tau+tau background, we should strive to have a first level trigger allowing to explore the mass range down to ~ 150 - 200 GeV.
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spelling cern-6871452023-03-14T20:33:23Zhttp://cds.cern.ch/record/687145engKinnunen, R.Denegri, D.The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacksParticle Physics - PhenomenologyWe present a first study of the channel H, A -> tau+tau -> h+ + h- + X in CMS at high m(A) values where no triggering difficulties are expected with QCD jets. At present the tau selection is based solely on the presence of a hard isolated track in the "tau" jet, but further refinements based on calorimeter collimation or impact parameter selections are obviously possible. The main irreducible background in these conditions is due to QCD jets with hard fragmentations. A large reduction of this background and improvement in the expected signal to background ratio is provided by Etmiss cuts. The expected high-mass reach in the m(A) tan(beta) parameter space for 3 x 10**4pb**-1 is shown. This H -> tau+tau channel provides the highest mass reach and the best mass resolution when compared to tau,tau -> lepton+hadron + Xand tau,tau -> electton + muon + X final states. To the extent that with further calorimetric and impact parameter based selection criteria the QCD background can be kept under control, i.e. below the irreducible Z,gamma* -> tau+tau background, we should strive to have a first level trigger allowing to explore the mass range down to ~ 150 - 200 GeV.We present a first study of the channel H, A -> tau+tau -> h+ + h- + X in CMS at high m(A) values where no triggering difficulties are expected with QCD jets. At present the tau selection is based solely on the presence of a hard isolated track in the "tau" jet, but further refinements based on calorimeter collimation or impact parameter selections are obviously possible. The main irreducible background in these conditions is due to QCD jets with hard fragmentations. A large reduction of this background and improvement in the expected signal to background ratio is provided by Etmiss cuts. The expected high-mass reach in the m(A) tan(beta) parameter space for 3 x 10**4pb**-1 is shown. This H -> tau+tau channel provides the highest mass reach and the best mass resolution when compared to tau,tau -> lepton+hadron + Xand tau,tau -> electton + muon + X final states. To the extent that with further calorimetric and impact parameter based selection criteria the QCD background can be kept under control, i.e. below the irreducible Z,gamma* -> tau+tau background, we should strive to have a first level trigger allowing to explore the mass range down to ~ 150 - 200 GeV.hep-ph/9907291CMS-NOTE-1999-037CMS-NOTE-1999-037oai:cds.cern.ch:6871451999-07-12
spellingShingle Particle Physics - Phenomenology
Kinnunen, R.
Denegri, D.
The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title_full The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title_fullStr The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title_full_unstemmed The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title_short The $H_{SUSY} \to \tau\tau \to h^{\pm} +h^{\mp} + X$ channel, its advantages and potential instrumental drawbacks
title_sort $h_{susy} \to \tau\tau \to h^{\pm} +h^{\mp} + x$ channel, its advantages and potential instrumental drawbacks
topic Particle Physics - Phenomenology
url http://cds.cern.ch/record/687145
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