We present a conceptually new framework for describing jet evolution in the dense medium produced in ultra-relativistic nucleus-nucleus collisions using perturbative QCD and its implementation into the Monte Carlo event generator Jewel. The rescattering of hard partons in the medium is modelled by infrared continued pQCD matrix elements supplemented with parton showers. The latter approximate higher order real-emission matrix elements and thus generate medium-induced gluon emissions. The interplay between different emissions is governed by their formation times. The destructive interference between subsequent scattering processes, the non-Abelian version of the Landau-Pomeranchuk-Migdal effect, is also taken into account. In this way the co...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWe present a new model for jet quenching from coherent radiation in a brick me...
We present a conceptually new framework for describing jet evolution in the dense medium produced in...
We present a conceptually new framework for describing jet evolution in the dense medium produced in...
Abstract: We present a conceptually new framework for describing jet evolution in the dense medium p...
The physics of jet quenching combines the dynamics of the QCD parton shower with bremsstrahlung radi...
We develop a framework to simulate jet quenching in nuclear environments on a quantum computer. The ...
In this publication the performance of the Monte Carlo event generator Jewel in non-central heavy-io...
The model to simulate rescattering and partonic energy loss in ultrarelativistic heavy ion collision...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
AbstractIn this publication the performance of the Monte Carlo event generator Jewel in non-central ...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
Jet quenching has been one of the most important indicators that ultra-relativistic heavy-ion collis...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWe present a new model for jet quenching from coherent radiation in a brick me...
We present a conceptually new framework for describing jet evolution in the dense medium produced in...
We present a conceptually new framework for describing jet evolution in the dense medium produced in...
Abstract: We present a conceptually new framework for describing jet evolution in the dense medium p...
The physics of jet quenching combines the dynamics of the QCD parton shower with bremsstrahlung radi...
We develop a framework to simulate jet quenching in nuclear environments on a quantum computer. The ...
In this publication the performance of the Monte Carlo event generator Jewel in non-central heavy-io...
The model to simulate rescattering and partonic energy loss in ultrarelativistic heavy ion collision...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
AbstractIn this publication the performance of the Monte Carlo event generator Jewel in non-central ...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
Jet quenching has been one of the most important indicators that ultra-relativistic heavy-ion collis...
We present a new formulation of jet quenching in perturbative QCD beyond the eikonal approximation. ...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWithin perturbative QCD, we develop a new picture for the parton shower genera...
International audienceWe present a new model for jet quenching from coherent radiation in a brick me...