Heavy ion collisions present exciting opportunities to study the effects of quantum coherence in the formation of subatomic particle showers. We report on the first calculation of the momentum sharing and angular separation distributions between the leading subjets inside a reconstructed jet in such collisions. These observables are directly sensitive to the hardest branching within jets and can probe the early stage of the jet formation. We find that the leading-order medium-induced splitting functions, here obtained in the framework of soft-collinear effective theory with Glauber gluon interactions, capture the essential many-body physics, which is different from proton-proton reactions. Qualitative and in most cases quantitative agreemen...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
Abstract Within the context of a hybrid strong/weak coupling model of jet quenching, we study the mo...
Two suggested models of jet fragmentation in a quark-gluon plasma have been tested, combined and fur...
We define a new strategy to scan jet substructure in heavy-ion collisions. The scope is multifold: (...
We present recent results on measurements of jet substructures using grooming techniques with pp and...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
We present results on measurements of inclusive jet substructure variables using grooming techniques...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
We argue that contemporary jet substructure techniques might facilitate a more direct measurement of...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
The nuclear modification of jet splitting in relativistic heavy-ion collisions at RHIC and the LHC e...
Abstract I develop an Effective Field Theory (EFT) framework t...
We investigate the effect of PT-broadening on jet substructure observables in heavy-ion collisions a...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
Abstract Within the context of a hybrid strong/weak coupling model of jet quenching, we study the mo...
Two suggested models of jet fragmentation in a quark-gluon plasma have been tested, combined and fur...
We define a new strategy to scan jet substructure in heavy-ion collisions. The scope is multifold: (...
We present recent results on measurements of jet substructures using grooming techniques with pp and...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
We present results on measurements of inclusive jet substructure variables using grooming techniques...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
We argue that contemporary jet substructure techniques might facilitate a more direct measurement of...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
The nuclear modification of jet splitting in relativistic heavy-ion collisions at RHIC and the LHC e...
Abstract I develop an Effective Field Theory (EFT) framework t...
We investigate the effect of PT-broadening on jet substructure observables in heavy-ion collisions a...
Data from heavy ion collisions suggest that the evolution of a parton shower is modified by interact...
Abstract Within the context of a hybrid strong/weak coupling model of jet quenching, we study the mo...
Two suggested models of jet fragmentation in a quark-gluon plasma have been tested, combined and fur...