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OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints

Reconstructed mass variables, such as $M_2$, $M_{2C}$, $M_T^\star$, and $M_{T2}^W$, play an essential role in searches for new physics at hadron colliders. The calculation of these variables generally involves constrained minimization in a large parameter space, which is numerically challenging. We...

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Autores principales: Cho, Won Sang, Gainer, James S., Kim, Doojin, Lim, Sung Hak, Matchev, Konstantin T., Moortgat, Filip, Pape, Luc, Park, Myeonghun
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1007/JHEP01(2016)026
http://cds.cern.ch/record/2040380
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author Cho, Won Sang
Gainer, James S.
Kim, Doojin
Lim, Sung Hak
Matchev, Konstantin T.
Moortgat, Filip
Pape, Luc
Park, Myeonghun
author_facet Cho, Won Sang
Gainer, James S.
Kim, Doojin
Lim, Sung Hak
Matchev, Konstantin T.
Moortgat, Filip
Pape, Luc
Park, Myeonghun
author_sort Cho, Won Sang
collection CERN
description Reconstructed mass variables, such as $M_2$, $M_{2C}$, $M_T^\star$, and $M_{T2}^W$, play an essential role in searches for new physics at hadron colliders. The calculation of these variables generally involves constrained minimization in a large parameter space, which is numerically challenging. We provide a C++ code, OPTIMASS, which interfaces with the MINUIT library to perform this constrained minimization using the Augmented Lagrangian Method. The code can be applied to arbitrarily general event topologies and thus allows the user to significantly extend the existing set of kinematic variables. We describe this code and its motivation and demonstrate its use in the analysis of the fully leptonic decay of pair-produced top quarks using the $M_2$ variables.
id cern-2040380
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20403802022-08-10T12:40:01Zdoi:10.1007/JHEP01(2016)026http://cds.cern.ch/record/2040380engCho, Won SangGainer, James S.Kim, DoojinLim, Sung HakMatchev, Konstantin T.Moortgat, FilipPape, LucPark, MyeonghunOPTIMASS: A Package for the Minimization of Kinematic Mass Functions with ConstraintsParticle Physics - PhenomenologyReconstructed mass variables, such as $M_2$, $M_{2C}$, $M_T^\star$, and $M_{T2}^W$, play an essential role in searches for new physics at hadron colliders. The calculation of these variables generally involves constrained minimization in a large parameter space, which is numerically challenging. We provide a C++ code, OPTIMASS, which interfaces with the MINUIT library to perform this constrained minimization using the Augmented Lagrangian Method. The code can be applied to arbitrarily general event topologies and thus allows the user to significantly extend the existing set of kinematic variables. We describe this code and its motivation and demonstrate its use in the analysis of the fully leptonic decay of pair-produced top quarks using the $M_2$ variables.Reconstructed mass variables, such as M$_{2}$, M$_{2C}$ , M$_{T}^{*}$ , and M$_{T2}^{W}$ , play an essential role in searches for new physics at hadron colliders. The calculation of these variables generally involves constrained minimization in a large parameter space, which is numerically challenging. We provide a C++ code, Optimass, which interfaces with the Minuit library to perform this constrained minimization using the Augmented Lagrangian Method. The code can be applied to arbitrarily general event topologies, thus allowing the user to significantly extend the existing set of kinematic variables. We describe this code, explain its physics motivation, and demonstrate its use in the analysis of the fully leptonic decay of pair-produced top quarks using M$_{2}$ variables.Reconstructed mass variables, such as $M_2$, $M_{2C}$, $M_T^\star$, and $M_{T2}^W$, play an essential role in searches for new physics at hadron colliders. The calculation of these variables generally involves constrained minimization in a large parameter space, which is numerically challenging. We provide a C++ code, OPTIMASS, which interfaces with the MINUIT library to perform this constrained minimization using the Augmented Lagrangian Method. The code can be applied to arbitrarily general event topologies and thus allows the user to significantly extend the existing set of kinematic variables. We describe this code and its physics motivation, and demonstrate its use in the analysis of the fully leptonic decay of pair-produced top quarks using the $M_2$ variables.arXiv:1508.00589CTPU-15-09APCTP-PRE2015-020IPMU15-0115CTPU-15-09APCTP-PRE2015-020IPMU15-0115oai:cds.cern.ch:20403802015-08-03
spellingShingle Particle Physics - Phenomenology
Cho, Won Sang
Gainer, James S.
Kim, Doojin
Lim, Sung Hak
Matchev, Konstantin T.
Moortgat, Filip
Pape, Luc
Park, Myeonghun
OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title_full OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title_fullStr OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title_full_unstemmed OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title_short OPTIMASS: A Package for the Minimization of Kinematic Mass Functions with Constraints
title_sort optimass: a package for the minimization of kinematic mass functions with constraints
topic Particle Physics - Phenomenology
url https://dx.doi.org/10.1007/JHEP01(2016)026
http://cds.cern.ch/record/2040380
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