In this proceedings contribution, I review recent work that aims to provide a more comprehensive and systematic understanding of bottomonium dynamics in the quark-gluon plasma using an open quantum system (OQS) approach that is applied in the framework of the potential non-relativistic QCD (pNRQCD) effective field theory and coupled to realistic hydrodynamical backgrounds that have been tuned to soft hadron observables. I review how the computation of bottomonium suppression can be reduced to solving a Gorini- Kossakowski-Sudarshan-Lindblad (GKSL) equation for the evolution of the bb̅ reduced density matrix, which includes both singlet and octet states plus medium-induced transitions between them at next-to-leading order (NLO) in the bindin...
Heavy quarkonium continues to play a central role in the study of nuclear matter under extremes of t...
Abstract We study quarkonium transport in the quark-gluon plas...
We study the properties of the Lindbladian quantum mechanical evolution of quarkonia with non-Abelia...
In this proceedings contribution, I review recent work that aims to provide a more comprehensive and...
We solve the Lindblad equation describing the Brownian motion of a Coulombic heavy quark-antiquark p...
We review recent progress in open quantum system approach to the description of quarkonium in the qu...
International audienceIn recent years, a significant theoretical effort has been made towards a dyna...
Heavy quarkonium related observables are very useful to obtain information about the medium created ...
International audienceWe address the evolution of heavy-quarkonium states in an expanding quark-gluo...
Quarkonium suppression in heavy ion collisions has been used as a probe of the quark-gluon plasma (Q...
Quarkonium suppression is one of the most investigated probes of the medium produced in heavy-ion co...
We investigate the phenomenon of Bottomonium melting in a thermal quark-gluon plasma using three-dim...
Three are the mechanisms that influence quarkonium suppression in a medium: screening, thermal decay...
We extend our study of bottomonium spectral functions in the quark-gluon plasma to nonzero momentum...
Abstract. We present recent results on the in-medium modification of S- and P-wave bottomonium state...
Heavy quarkonium continues to play a central role in the study of nuclear matter under extremes of t...
Abstract We study quarkonium transport in the quark-gluon plas...
We study the properties of the Lindbladian quantum mechanical evolution of quarkonia with non-Abelia...
In this proceedings contribution, I review recent work that aims to provide a more comprehensive and...
We solve the Lindblad equation describing the Brownian motion of a Coulombic heavy quark-antiquark p...
We review recent progress in open quantum system approach to the description of quarkonium in the qu...
International audienceIn recent years, a significant theoretical effort has been made towards a dyna...
Heavy quarkonium related observables are very useful to obtain information about the medium created ...
International audienceWe address the evolution of heavy-quarkonium states in an expanding quark-gluo...
Quarkonium suppression in heavy ion collisions has been used as a probe of the quark-gluon plasma (Q...
Quarkonium suppression is one of the most investigated probes of the medium produced in heavy-ion co...
We investigate the phenomenon of Bottomonium melting in a thermal quark-gluon plasma using three-dim...
Three are the mechanisms that influence quarkonium suppression in a medium: screening, thermal decay...
We extend our study of bottomonium spectral functions in the quark-gluon plasma to nonzero momentum...
Abstract. We present recent results on the in-medium modification of S- and P-wave bottomonium state...
Heavy quarkonium continues to play a central role in the study of nuclear matter under extremes of t...
Abstract We study quarkonium transport in the quark-gluon plas...
We study the properties of the Lindbladian quantum mechanical evolution of quarkonia with non-Abelia...