The interaction of a jet with the medium created in heavy-ion collisions is not yet fully understood from a QCD perspective. This is mainly due to the non-perturbative nature of this interaction which affects both transverse jet momentum broadening and jet quenching. We discuss how lattice simulations of Electrostatic QCD, can be matched to full, four dimensional QCD, to determine non-perturbative contributions to the momentum broadening kernel. We determine the momentum broadening kernel in impact parameter and momentum space and finally show how these results can be used in phenomenological calculations of in-medium splitting rates
Jet quenching, the modification of the properties of a QCD jet when the parton cascade takes place i...
We define a new strategy to scan jet substructure in heavy-ion collisions. The scope is multifold: (...
We reconsider the problem of transverse momentum broadening of a highly energetic parton suffering m...
The interaction of a jet with the medium created in heavy-ion collisions is not yet fully understood...
Schlichting S, Soudi I. Non-perturbative determination of the collisional broadening kernel and med...
Due to the dynamical, real-time, nature of the phenomenon, the study of jet quenching via lattice QC...
We present a lattice study of the momentum broadening experienced by a hard parton in the quark-gluo...
Schlichting S, Soudi I. Splitting rates in QCD plasmas from a nonperturbative determination of the m...
Heavy-ion collision experiments and related theoretical efforts of understanding the strong interact...
We supply recently obtained results from lattice EQCD with the correct UV limit to construct the col...
The JEWEL 1.0 Monte Carlo simulates jet evolution in a medium with a microscopic description of spli...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
---------- Heavy ion collisions at high energies can be used as an interesting way to recreate and s...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
International audienceIn this work, we obtain the leading corrections to the jet momentum broadening...
Jet quenching, the modification of the properties of a QCD jet when the parton cascade takes place i...
We define a new strategy to scan jet substructure in heavy-ion collisions. The scope is multifold: (...
We reconsider the problem of transverse momentum broadening of a highly energetic parton suffering m...
The interaction of a jet with the medium created in heavy-ion collisions is not yet fully understood...
Schlichting S, Soudi I. Non-perturbative determination of the collisional broadening kernel and med...
Due to the dynamical, real-time, nature of the phenomenon, the study of jet quenching via lattice QC...
We present a lattice study of the momentum broadening experienced by a hard parton in the quark-gluo...
Schlichting S, Soudi I. Splitting rates in QCD plasmas from a nonperturbative determination of the m...
Heavy-ion collision experiments and related theoretical efforts of understanding the strong interact...
We supply recently obtained results from lattice EQCD with the correct UV limit to construct the col...
The JEWEL 1.0 Monte Carlo simulates jet evolution in a medium with a microscopic description of spli...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
---------- Heavy ion collisions at high energies can be used as an interesting way to recreate and s...
Heavy ion collisions at high energies can be used as an interesting way to recreate and study the me...
International audienceIn this work, we obtain the leading corrections to the jet momentum broadening...
Jet quenching, the modification of the properties of a QCD jet when the parton cascade takes place i...
We define a new strategy to scan jet substructure in heavy-ion collisions. The scope is multifold: (...
We reconsider the problem of transverse momentum broadening of a highly energetic parton suffering m...