AbstractWe consider the dissociation of heavy quarkonium in a medium close to thermal equilibrium but with a small momentum space anisotropy. Dissociation is defined to take place when the width of the ground state equals its binding energy. We show that if the anisotropic medium is obtained isentropically from the equilibrium one, then to first order in the anisotropy parameter the dissociation temperature remains unchanged. If, in contrast, the non-equilibrium system has a smaller entropy density than the equilibrium one, then the dissociation temperature increases with respect to the isotropic case, by up to ∼ 10% for modest anisotropies
Blaschke D, Kaczmarek O, Laermann E, Yudichev V. Heavy quark potential and quarkonia dissociation ra...
A QQ¯ bound state represents a balance between repulsive kinetic and attractive potential energy. In...
Quenched lattice data for the quark-antiquark interaction (in terms of heavy quark free energies) in...
Burnier Y, Laine M, Vepsaelaeinen M. Quarkonium dissociation in the presence of a small momentum spa...
We examine three different ways a heavy quarkonium can dissociate at high temperatures. The heavy qu...
In this paper, quarkonium dissociation is investigated in an anisotropic plasma in the hot and dense...
The present article is the follow-up work of Phys. Rev. D 94, 094006 (2016), where we have extended ...
International audienceIn the early stages of heavy-ion collisions, the hot QCD matter expands more l...
International audienceIn the early stages of heavy-ion collisions, the hot QCD matter expands more l...
In the early stages of heavy-ion collisions, the hot QCD matter expands more longitudinally than tra...
In the early stages of heavy-ion collisions, the hot QCD matter expands more longitudinally than tra...
AbstractIn high-energy nuclear collisions, heavy quark potential at finite temperature controls the ...
In statistical QCD, the thermal properties of the quark-gluon plasma can be determined by studying t...
We compute the screening length for quarkonium mesons moving through an anisotropic, strongly couple...
We compute the screening length for quarkonium mesons moving through an anisotropic, strongly couple...
Blaschke D, Kaczmarek O, Laermann E, Yudichev V. Heavy quark potential and quarkonia dissociation ra...
A QQ¯ bound state represents a balance between repulsive kinetic and attractive potential energy. In...
Quenched lattice data for the quark-antiquark interaction (in terms of heavy quark free energies) in...
Burnier Y, Laine M, Vepsaelaeinen M. Quarkonium dissociation in the presence of a small momentum spa...
We examine three different ways a heavy quarkonium can dissociate at high temperatures. The heavy qu...
In this paper, quarkonium dissociation is investigated in an anisotropic plasma in the hot and dense...
The present article is the follow-up work of Phys. Rev. D 94, 094006 (2016), where we have extended ...
International audienceIn the early stages of heavy-ion collisions, the hot QCD matter expands more l...
International audienceIn the early stages of heavy-ion collisions, the hot QCD matter expands more l...
In the early stages of heavy-ion collisions, the hot QCD matter expands more longitudinally than tra...
In the early stages of heavy-ion collisions, the hot QCD matter expands more longitudinally than tra...
AbstractIn high-energy nuclear collisions, heavy quark potential at finite temperature controls the ...
In statistical QCD, the thermal properties of the quark-gluon plasma can be determined by studying t...
We compute the screening length for quarkonium mesons moving through an anisotropic, strongly couple...
We compute the screening length for quarkonium mesons moving through an anisotropic, strongly couple...
Blaschke D, Kaczmarek O, Laermann E, Yudichev V. Heavy quark potential and quarkonia dissociation ra...
A QQ¯ bound state represents a balance between repulsive kinetic and attractive potential energy. In...
Quenched lattice data for the quark-antiquark interaction (in terms of heavy quark free energies) in...