The identification of hadronically decaying heavy states, such as vector bosons, the Higgs, or the top quark, produced with large transverse boosts has been and will continue to be a central focus of the jet physics program at the Large Hadron Collider (LHC). At a future hadron collider working at an order-of-magnitude larger energy than the LHC, these heavy states would be easily produced with transverse boosts of several TeV. At these energies, their decay products will be separated by angular scales comparable to individual calorimeter cells, making the current jet substructure identification techniques for hadronic decay modes not directly employable. In addition, at the high energy and luminosity projected at a future hadron collider, ...
We investigate the reconstruction of high pT hadronically-decaying top quarks at the Large Hadron Co...
Distinguishing hadronically decaying boosted top quarks from massive QCD jets is an important challe...
The Large Hadron Collider is the first particle accelerator that provides high enough energy to prod...
The identification of hadronically decaying heavy states, such as vector bosons, the Higgs, or the t...
For highly energetic top quarks, the products of the decay t→bqq ′ are collimated. The three-prong...
Studies of highly-boosted top quarks produced inclusively in pp collisions at √ s = 14 TeV are discu...
A search is performed for a vector-like heavy T quark that is produced in pairs and that decays to a...
At the LHC top quarks will for the first time be produced abundantly and with very large transverse ...
Boosted top quark tagging is one of the challenging, and at the same time exciting, tasks in high en...
At the LHC objects with masses at the electroweak scale will for the first time be produced with ver...
We investigate the reconstruction of high pT hadronically-decaying top quarks at the Large Hadron Co...
Distinguishing hadronically decaying boosted top quarks from massive QCD jets is an important challe...
The Large Hadron Collider is the first particle accelerator that provides high enough energy to prod...
The identification of hadronically decaying heavy states, such as vector bosons, the Higgs, or the t...
For highly energetic top quarks, the products of the decay t→bqq ′ are collimated. The three-prong...
Studies of highly-boosted top quarks produced inclusively in pp collisions at √ s = 14 TeV are discu...
A search is performed for a vector-like heavy T quark that is produced in pairs and that decays to a...
At the LHC top quarks will for the first time be produced abundantly and with very large transverse ...
Boosted top quark tagging is one of the challenging, and at the same time exciting, tasks in high en...
At the LHC objects with masses at the electroweak scale will for the first time be produced with ver...
We investigate the reconstruction of high pT hadronically-decaying top quarks at the Large Hadron Co...
Distinguishing hadronically decaying boosted top quarks from massive QCD jets is an important challe...
The Large Hadron Collider is the first particle accelerator that provides high enough energy to prod...