Probing bilinear R-parity violating supergravity at the LHC


Autoria(s): CAMPOS, F. de; Eboli, Oscar Jose Pinto; Magro, Mauricio Bernardino; POROD, W.; RESTREPO, D.; HIRSCH, M.; VALLE, J. W. F.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

20/10/2012

20/10/2012

2008

Resumo

We study the collider phenomenology of bilinear R-parity violating supergravity, the simplest effective model for supersymmetric neutrino masses accounting for the current neutrino oscillation data. At the CERN Large Hadron Collider the center-of-mass energy will be high enough to probe directly these models through the search for the superpartners of the Standard Model (SM) particles. We analyze the impact of R-parity violation on the canonical supersymmetry searches-that is, we examine how the decay of the lightest supersymmetric particle (LSP) via bilinear R-parity violating interactions degrades the average expected missing momentum of the reactions and show how this diminishes the reach in the usual channels for supersymmetry searches. However, the R-parity violating interactions lead to an enhancement of the final states containing isolated same-sign di-leptons and trileptons, compensating the reach loss in the fully inclusive channel. We show how the searches for displaced vertices associated to LSP decay substantially increase the coverage in supergravity parameter space, giving the corresponding reaches for two reference luminosities of 10 and 100 fb(-1) and compare with those of the R-parity conserving minimal supergravity model.

Identificador

JOURNAL OF HIGH ENERGY PHYSICS, n.5, 2008

1126-6708

http://producao.usp.br/handle/BDPI/29295

http://apps.isiknowledge.com/InboundService.do?Func=Frame&product=WOS&action=retrieve&SrcApp=EndNote&UT=000256664400048&Init=Yes&SrcAuth=ResearchSoft&mode=FullRecord

Idioma(s)

eng

Publicador

SPRINGER

Relação

Journal of High Energy Physics

Direitos

restrictedAccess

Copyright SPRINGER

Palavras-Chave #supersymmetry phenomenology #neutrino physics #beyond standard model #SUPERSYMMETRIC STANDARD MODEL #PHYSICS EVENT GENERATION #NEUTRINO OSCILLATIONS #DARK-MATTER #LEPTON NUMBER #CERN LHC #BREAKING #PARTICLE #DECAYS #Physics, Particles & Fields
Tipo

article

original article

publishedVersion