Given that there is currently no direct evidence for supersymmetric particles at the LHC it is timely to re-evaluate the need for low scale supersymmetry and to ask whether it is likely to be discoverable by the LHC running at its full energy. We review the status of simple SUSY extensions of the Standard Model in the light of the Higgs discovery and the non-observation of evidence for SUSY at the LHC. The need for large radiative corrections to drive the Higgs mass up to 126 GeV and for the coloured SUSY states to be heavy to explain their non-observation introduces a little hierarchy problem and we discuss how to quantify the associated fine tuning. The requirement of low fine tuning requires non-minimal SUSY extensions and we discuss the...
Taking a bottom-up point of view and focussing on the lack of signals so far in the Higgs and in the...
Weak scale supersymmetry is often said to be fine-tuned, especially if the matter content is minimal...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...
Shafi, QaisarSupersymmetry (SUSY) is one of the most elegant extensions of the standard model (SM) o...
1 SUSY at the LHC There are many reasons why to expect Supersymmetry (SUSY) at the TeV scale: it sol...
Supersymmetry (SUSY) is an appealing concept which provides a plausible solution to the fine tuning ...
Supersymmetry (SUSY) is one of the most important ideas ever conceived in particle physics. It is a ...
International audienceThe recent results from the ATLAS and CMS collaborations show that the allowed...
The requirement that SUSY should solve the hierarchy problem without undue fine-tuning imposes sever...
Supersymmetry (SUSY) represents one of the most theoretically interesting extensions of the Standard...
We summarize the status of various supersymmetric models in view of the existing LHC data. A particu...
With the 8 TeV LHC run now concluded, the first consequences of the experimental results on the supe...
Supersymmetry is a prime candidate for physics beyond the Standard Model because low-energy supersym...
In spite of the fact that the signature of supersymmetry (SUSY) is yet to be found, SUSY remains as ...
Confronted with the LHC data of a Higgs boson around 125 GeV, different models of low energy SUSY sh...
Taking a bottom-up point of view and focussing on the lack of signals so far in the Higgs and in the...
Weak scale supersymmetry is often said to be fine-tuned, especially if the matter content is minimal...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...
Shafi, QaisarSupersymmetry (SUSY) is one of the most elegant extensions of the standard model (SM) o...
1 SUSY at the LHC There are many reasons why to expect Supersymmetry (SUSY) at the TeV scale: it sol...
Supersymmetry (SUSY) is an appealing concept which provides a plausible solution to the fine tuning ...
Supersymmetry (SUSY) is one of the most important ideas ever conceived in particle physics. It is a ...
International audienceThe recent results from the ATLAS and CMS collaborations show that the allowed...
The requirement that SUSY should solve the hierarchy problem without undue fine-tuning imposes sever...
Supersymmetry (SUSY) represents one of the most theoretically interesting extensions of the Standard...
We summarize the status of various supersymmetric models in view of the existing LHC data. A particu...
With the 8 TeV LHC run now concluded, the first consequences of the experimental results on the supe...
Supersymmetry is a prime candidate for physics beyond the Standard Model because low-energy supersym...
In spite of the fact that the signature of supersymmetry (SUSY) is yet to be found, SUSY remains as ...
Confronted with the LHC data of a Higgs boson around 125 GeV, different models of low energy SUSY sh...
Taking a bottom-up point of view and focussing on the lack of signals so far in the Higgs and in the...
Weak scale supersymmetry is often said to be fine-tuned, especially if the matter content is minimal...
The natural supersymmetry (SUSY) requires that the stop, sbottom, and gluino are around 1 TeV or lig...