In this contribution I will highlight the new challenges for top quark physics at LHC Run II, focusing in particular on the interplay between precision studies on the top quark and searches for new physics. A new strategy to search for subtle scenarios of new physics is envisaged. The ability to very accurately compute and measure top quark properties such as its production rate, decay rates and distributions, and specific features in the distribution of variables sensitive to the top quark mass is put at the center of this strategy to probe new physic
The CDF and D0 experiments at the Fermilab Tevatron have discovered the top quark and provided first...
The top quark, when it was finally discovered at Fermilab in 1995 completed the three-generation str...
The top quark, the heaviest known elementary particle discovered at the Fermilab Tevatron almost twe...
In this contribution I will highlight the new challenges for top quark physics at LHC Run II, focusi...
International audienceThe high number of top quarks which will be produced at the LHC will allow pre...
I will briefly review the physics of top quark at high energy colliders. A new discovery of single-t...
The Large Hadron Collider (LHC) will provide a huge amount of top-antitop events, making the LHC a t...
In this contribution I will highlight the new challenges for top quark physics at LHC Run II, focusi...
The techniques used to study top quarks at hadron colliders are presented. The analyses that discove...
The top quark is the heaviest fundamental particle known so far. As such, it is expected to play a c...
The talk summarizes the prospect for top quark physics at the LHC (CMS and ATLAS). It reviews the ph...
The Standard Model (SM) is the established theory of particle physics down to distance scales as sma...
The top quark is the heaviest known elementary particle and the only quark that decays before hadron...
The LHC will be a top quark factory. In this note, the central role of the top quark for LHC physics...
With the full Tevatron Run II and early LHC data samples, the opportunity for furthering our underst...
The CDF and D0 experiments at the Fermilab Tevatron have discovered the top quark and provided first...
The top quark, when it was finally discovered at Fermilab in 1995 completed the three-generation str...
The top quark, the heaviest known elementary particle discovered at the Fermilab Tevatron almost twe...
In this contribution I will highlight the new challenges for top quark physics at LHC Run II, focusi...
International audienceThe high number of top quarks which will be produced at the LHC will allow pre...
I will briefly review the physics of top quark at high energy colliders. A new discovery of single-t...
The Large Hadron Collider (LHC) will provide a huge amount of top-antitop events, making the LHC a t...
In this contribution I will highlight the new challenges for top quark physics at LHC Run II, focusi...
The techniques used to study top quarks at hadron colliders are presented. The analyses that discove...
The top quark is the heaviest fundamental particle known so far. As such, it is expected to play a c...
The talk summarizes the prospect for top quark physics at the LHC (CMS and ATLAS). It reviews the ph...
The Standard Model (SM) is the established theory of particle physics down to distance scales as sma...
The top quark is the heaviest known elementary particle and the only quark that decays before hadron...
The LHC will be a top quark factory. In this note, the central role of the top quark for LHC physics...
With the full Tevatron Run II and early LHC data samples, the opportunity for furthering our underst...
The CDF and D0 experiments at the Fermilab Tevatron have discovered the top quark and provided first...
The top quark, when it was finally discovered at Fermilab in 1995 completed the three-generation str...
The top quark, the heaviest known elementary particle discovered at the Fermilab Tevatron almost twe...