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Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$

The precise determination of the missing transverse momentum is crucial for all processes where undetectable particles are involved. In searches beyond the standard model, such as collider-based dark-matter searches or supersymmetry, the precise determination of the missing transverse momentum is a...

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Autor principal: CMS Collaboration
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2048696
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author CMS Collaboration
author_facet CMS Collaboration
author_sort CMS Collaboration
collection CERN
description The precise determination of the missing transverse momentum is crucial for all processes where undetectable particles are involved. In searches beyond the standard model, such as collider-based dark-matter searches or supersymmetry, the precise determination of the missing transverse momentum is a key component. For the standard model Higgs Boson discovery, MVA $E^{miss}_T$ played an importent role in analyses like $H \rightarrow \tau \tau$ with up to four neutrinos in the final state, where the mass resolution largely depends on the $E^{miss}_T$ resolution. This note presents the performance of the MVA $E^{miss}_T$ developed in Run 1 applied on first 13 TeV data.
id cern-2048696
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling cern-20486962019-09-30T06:29:59Zhttp://cds.cern.ch/record/2048696engCMS CollaborationMultivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$Detectors and Experimental TechniquesThe precise determination of the missing transverse momentum is crucial for all processes where undetectable particles are involved. In searches beyond the standard model, such as collider-based dark-matter searches or supersymmetry, the precise determination of the missing transverse momentum is a key component. For the standard model Higgs Boson discovery, MVA $E^{miss}_T$ played an importent role in analyses like $H \rightarrow \tau \tau$ with up to four neutrinos in the final state, where the mass resolution largely depends on the $E^{miss}_T$ resolution. This note presents the performance of the MVA $E^{miss}_T$ developed in Run 1 applied on first 13 TeV data.CMS-DP-2015-042CERN-CMS-DP-2015-042oai:cds.cern.ch:20486962015-08-28
spellingShingle Detectors and Experimental Techniques
CMS Collaboration
Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title_full Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title_fullStr Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title_full_unstemmed Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title_short Multivariate Determination of the Missing Energy in the Transverse Plane ($E^{miss}_T$) at $\sqrt{s}= 13 \TeV$
title_sort multivariate determination of the missing energy in the transverse plane ($e^{miss}_t$) at $\sqrt{s}= 13 \tev$
topic Detectors and Experimental Techniques
url http://cds.cern.ch/record/2048696
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