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NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics

The naturalness issue is a compelling reason for the emergence of Beyond the Standard Model (BSM) physics at the Large Hadron Collider (LHC). Absence of hints in direct searches makes the model-independent Effective Field Theory (EFT) approach to Higgs physics interesting. It is important that to es...

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Detalles Bibliográficos
Autores principales: Jomhari, Nur Zulaiha, Vardag, Fariha
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:http://cds.cern.ch/record/2041443
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author Jomhari, Nur Zulaiha
Vardag, Fariha
author_facet Jomhari, Nur Zulaiha
Vardag, Fariha
author_sort Jomhari, Nur Zulaiha
collection CERN
description The naturalness issue is a compelling reason for the emergence of Beyond the Standard Model (BSM) physics at the Large Hadron Collider (LHC). Absence of hints in direct searches makes the model-independent Effective Field Theory (EFT) approach to Higgs physics interesting. It is important that to establish to which extent the new boson discovered at LHC is the scalar particle predicted by the SM. BSM physics can change the HZZ coupling that associated ZH production probes. Model-independent extensions of the SM can describe possible changes, described in a field-theoretical way, via an extended Lagrangian with the SM fields. In this project, Higgs boson is Attached to WeaK bosons (HAWK) and Madgraph5 are used as a Monte Carlo (MC) generator to distinguish higher-order SM corrections from actual BSM manifestations and this study attempts to address is whether one can “calibrate” EFT calculations to match the most accurate SM predictions.
id cern-2041443
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-20414432019-09-30T06:29:59Zhttp://cds.cern.ch/record/2041443engJomhari, Nur ZulaihaVardag, FarihaNLO qq -> ZH production and Effective Lagrangians for BSM Higgs PhysicsParticle Physics - ExperimentThe naturalness issue is a compelling reason for the emergence of Beyond the Standard Model (BSM) physics at the Large Hadron Collider (LHC). Absence of hints in direct searches makes the model-independent Effective Field Theory (EFT) approach to Higgs physics interesting. It is important that to establish to which extent the new boson discovered at LHC is the scalar particle predicted by the SM. BSM physics can change the HZZ coupling that associated ZH production probes. Model-independent extensions of the SM can describe possible changes, described in a field-theoretical way, via an extended Lagrangian with the SM fields. In this project, Higgs boson is Attached to WeaK bosons (HAWK) and Madgraph5 are used as a Monte Carlo (MC) generator to distinguish higher-order SM corrections from actual BSM manifestations and this study attempts to address is whether one can “calibrate” EFT calculations to match the most accurate SM predictions.CERN-STUDENTS-Note-2015-019oai:cds.cern.ch:20414432015-08-07
spellingShingle Particle Physics - Experiment
Jomhari, Nur Zulaiha
Vardag, Fariha
NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title_full NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title_fullStr NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title_full_unstemmed NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title_short NLO qq -> ZH production and Effective Lagrangians for BSM Higgs Physics
title_sort nlo qq -> zh production and effective lagrangians for bsm higgs physics
topic Particle Physics - Experiment
url http://cds.cern.ch/record/2041443
work_keys_str_mv AT jomharinurzulaiha nloqqzhproductionandeffectivelagrangiansforbsmhiggsphysics
AT vardagfariha nloqqzhproductionandeffectivelagrangiansforbsmhiggsphysics