We extend a previously constructed T-matrix approach to the quark-gluon plasma (QGP) to include the effects of spin-dependent interactions between partons. Following earlier work within the relativistic quark model, the spin-dependent interactions figure as relativistic corrections to the Cornell potential. When applied to the vacuum spectroscopy of quarkonia, in particular their mass splittings in S- and P-wave states, the issue of the Lorentz structure of the confining potential arises. We confirm that a significant admixture of a vector interaction (to the previously assumed scalar interaction) improves the description of the experimental mass splittings. The temperature corrections to the in-medium potential are constrained by results f...
In the first part of the talk, we briefly review the problem of parton-energy loss and thermalizatio...
Journals published by the American Physical Society can be found at http://publish.aps.org/Thermaliz...
The study of the fundamental strong interaction is an important vehicle for advancing our understand...
We study the evolution of heavy quarkonium states with temperature in a Quark Gluon Plasma (QGP) by ...
The evaluation of quarkonium regeneration in ultrarelativistic heavy-ion collisions (URHICs) require...
We develop a new heavy quark transport model, QLBT, to simulate the dynamical propagation of heavy q...
Heavy quarks are excellent probes to understand the hot and dense medium formed in ultra-relativisti...
Heavy quarks are excellent probes to understand the hot and dense medium formed in ultra-relativisti...
The interaction potential between a pair of heavy quarks is calculated with resummed perturbation me...
Journals published by the American Physical Society can be found at http://publish.aps.org/Charm- an...
Abstract: I address the effect that a temperature dependent potential has on the sup-pression of hea...
The study of the fundamental strong interaction is an important vehicle for advancing our understand...
We study the interaction of leading jet partons in a strongly interacting quark-gluon plasma (sQGP) ...
The interactions of heavy quarks within the Quark Gluon Plasma (QGP) are interpreted utilizing an el...
Heavy quarkonium continues to play a central role in the study of nuclear matter under extremes of t...
In the first part of the talk, we briefly review the problem of parton-energy loss and thermalizatio...
Journals published by the American Physical Society can be found at http://publish.aps.org/Thermaliz...
The study of the fundamental strong interaction is an important vehicle for advancing our understand...
We study the evolution of heavy quarkonium states with temperature in a Quark Gluon Plasma (QGP) by ...
The evaluation of quarkonium regeneration in ultrarelativistic heavy-ion collisions (URHICs) require...
We develop a new heavy quark transport model, QLBT, to simulate the dynamical propagation of heavy q...
Heavy quarks are excellent probes to understand the hot and dense medium formed in ultra-relativisti...
Heavy quarks are excellent probes to understand the hot and dense medium formed in ultra-relativisti...
The interaction potential between a pair of heavy quarks is calculated with resummed perturbation me...
Journals published by the American Physical Society can be found at http://publish.aps.org/Charm- an...
Abstract: I address the effect that a temperature dependent potential has on the sup-pression of hea...
The study of the fundamental strong interaction is an important vehicle for advancing our understand...
We study the interaction of leading jet partons in a strongly interacting quark-gluon plasma (sQGP) ...
The interactions of heavy quarks within the Quark Gluon Plasma (QGP) are interpreted utilizing an el...
Heavy quarkonium continues to play a central role in the study of nuclear matter under extremes of t...
In the first part of the talk, we briefly review the problem of parton-energy loss and thermalizatio...
Journals published by the American Physical Society can be found at http://publish.aps.org/Thermaliz...
The study of the fundamental strong interaction is an important vehicle for advancing our understand...