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CMS Search Plans and Sensitivity to New Physics using Dijets

We present an update to CMS plans to search for physics beyond the standard model using dijets. We study jet cleanup, jet response versus $\eta$, optimization of $|\eta|$ cuts, and the dijet mass resolution. Estimates are presented for both the QCD background and signals of new physics with a focus...

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Detalles Bibliográficos
Autor principal: CMS Collaboration
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/1152565
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author CMS Collaboration
author_facet CMS Collaboration
author_sort CMS Collaboration
collection CERN
description We present an update to CMS plans to search for physics beyond the standard model using dijets. We study jet cleanup, jet response versus $\eta$, optimization of $|\eta|$ cuts, and the dijet mass resolution. Estimates are presented for both the QCD background and signals of new physics with a focus on the integrated luminosities 10 pb$^{-1}$, 100 pb$^{-1}$, and 1 fb$^{-1}$ expected early in LHC running. The inclusive cross section as a function of jet $p_T$ is a first simple measure of QCD dijets which is sensitive to a 3 TeV contact interaction with only 10 pb$^{-1}$. With the dijet mass distribution we expect to be able to observe dijet resonances with large cross sections, such as a 2 TeV excited quark which produces a convincing signal with only 100 pb$^{-1}$. With the dijet ratio, a simple angular measurement, we expect to be able to discover a contact interaction scale $\Lambda^+$ of 4, 7 and 10 TeV for integrated luminosities of 10 pb$^{-1}$, 100 pb$^{-1}$, and 1 fb$^{-1}$ respectively. Using the dijet ratio we can discover or confirm a dijet resonance, and eventually measure its spin. With 100 pb$^{-1}$ a 2 TeV resonance with the production rate of an excited quark produces a convincing signal in the dijet ratio.
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institution Organización Europea para la Investigación Nuclear
publishDate 2008
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spelling cern-11525652019-09-30T06:29:59Zhttp://cds.cern.ch/record/1152565CMS CollaborationCMS Search Plans and Sensitivity to New Physics using DijetsParticle Physics - ExperimentWe present an update to CMS plans to search for physics beyond the standard model using dijets. We study jet cleanup, jet response versus $\eta$, optimization of $|\eta|$ cuts, and the dijet mass resolution. Estimates are presented for both the QCD background and signals of new physics with a focus on the integrated luminosities 10 pb$^{-1}$, 100 pb$^{-1}$, and 1 fb$^{-1}$ expected early in LHC running. The inclusive cross section as a function of jet $p_T$ is a first simple measure of QCD dijets which is sensitive to a 3 TeV contact interaction with only 10 pb$^{-1}$. With the dijet mass distribution we expect to be able to observe dijet resonances with large cross sections, such as a 2 TeV excited quark which produces a convincing signal with only 100 pb$^{-1}$. With the dijet ratio, a simple angular measurement, we expect to be able to discover a contact interaction scale $\Lambda^+$ of 4, 7 and 10 TeV for integrated luminosities of 10 pb$^{-1}$, 100 pb$^{-1}$, and 1 fb$^{-1}$ respectively. Using the dijet ratio we can discover or confirm a dijet resonance, and eventually measure its spin. With 100 pb$^{-1}$ a 2 TeV resonance with the production rate of an excited quark produces a convincing signal in the dijet ratio.CMS-PAS-SBM-07-001oai:cds.cern.ch:11525652008-12-19T12:24:48Z
spellingShingle Particle Physics - Experiment
CMS Collaboration
CMS Search Plans and Sensitivity to New Physics using Dijets
title CMS Search Plans and Sensitivity to New Physics using Dijets
title_full CMS Search Plans and Sensitivity to New Physics using Dijets
title_fullStr CMS Search Plans and Sensitivity to New Physics using Dijets
title_full_unstemmed CMS Search Plans and Sensitivity to New Physics using Dijets
title_short CMS Search Plans and Sensitivity to New Physics using Dijets
title_sort cms search plans and sensitivity to new physics using dijets
topic Particle Physics - Experiment
url http://cds.cern.ch/record/1152565
work_keys_str_mv AT cmscollaboration cmssearchplansandsensitivitytonewphysicsusingdijets