We consider the natural supersymmetry scenario in the framework of the R-parity conserving minimal supersymmetric standard model (called natural MSSM) and examine the observability of stop pair production at the LHC. We first scan the parameters of this scenario under various experimental constraints, including the SM-like Higgs boson mass, the indirect limits from precision electroweak data and B-decays. Then in the allowed parameter space we study the stop pair production at the LHC followed by the stop decay into a top quark plus a lightest neutralino or into a bottom quark plus a chargino. From detailed Monte Carlo simulations of the signals and backgrounds, we find the two decay modes are complementary to each other in probing the stop...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...
The results of a search for top squark (stop) pair production in final states with one isolated lept...
In 2012, the Higgs boson was discovered by the Large Hadron Collider (LHC) experiment at CERN. Howev...
We analyze relevant signals expected at the LHC for a stop as the lightest supersymmetric particle (...
Supersymmetry (SUSY) still remains one of the most interesting theories which are candidates to desc...
Supersymmetry (SUSY) is one of the most appealing theories, which tries to explain some of the exper...
Published 4 February 2016Light top squarks (stops) and light higgsinos are the key features of natur...
Top-squarks (stop) play an important role in SUSY naturalness. The stop pair production is considere...
We compare the experimental prospects of direct stop and sbottom pair production searches at the LHC...
54 pages, 5 tables, 6 figuresWhile the presence of a light stop is increasingly disfavored by the ex...
Searches of supersymmetry at the LHC have put stringent constraints on the strong production of squa...
Supersymmetry (SUSY) is one of the most compelling theories to describe physics beyond the Standard ...
We investigate the impact of direct LHC SUSY searches on the parameter space of three natural scenar...
The Large Hadron Collider (LHC) and its experiments were built to explore fundamental questions of p...
The basic principle of naturalness has driven the majority of the LHC program, but so far all search...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...
The results of a search for top squark (stop) pair production in final states with one isolated lept...
In 2012, the Higgs boson was discovered by the Large Hadron Collider (LHC) experiment at CERN. Howev...
We analyze relevant signals expected at the LHC for a stop as the lightest supersymmetric particle (...
Supersymmetry (SUSY) still remains one of the most interesting theories which are candidates to desc...
Supersymmetry (SUSY) is one of the most appealing theories, which tries to explain some of the exper...
Published 4 February 2016Light top squarks (stops) and light higgsinos are the key features of natur...
Top-squarks (stop) play an important role in SUSY naturalness. The stop pair production is considere...
We compare the experimental prospects of direct stop and sbottom pair production searches at the LHC...
54 pages, 5 tables, 6 figuresWhile the presence of a light stop is increasingly disfavored by the ex...
Searches of supersymmetry at the LHC have put stringent constraints on the strong production of squa...
Supersymmetry (SUSY) is one of the most compelling theories to describe physics beyond the Standard ...
We investigate the impact of direct LHC SUSY searches on the parameter space of three natural scenar...
The Large Hadron Collider (LHC) and its experiments were built to explore fundamental questions of p...
The basic principle of naturalness has driven the majority of the LHC program, but so far all search...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...
The results of a search for top squark (stop) pair production in final states with one isolated lept...
In 2012, the Higgs boson was discovered by the Large Hadron Collider (LHC) experiment at CERN. Howev...