Dielectrons produced in ultra-relativistic heavy-ion collisions at the LHC provide a unique probe of the system evolution as they are unperturbed by final-state interactions. The dielectron continuum is extremely rich in physics sources: on top of ordinary Dalitz and resonance decays of pseudoscalar and vector mesons, thermal black-body radiation is of particular interest as it carries information about the temperature of the hot and dense system created in such collisions. The dielectron invariant-mass distribution is furthermore sensitive to medium modifications of the spectral function of short-lived vector mesons that are linked to the potential restoration of chiral symmetry at high temperatures. Correlated electron pairs from semi-lep...
Dielectrons are excellent tools to investigate the properties of the medium created in heavy-ion col...
In ordinary matter, quarks and gluons are confined inside hadrons by the strong interaction. At extr...
Low-mass electron–positron pairs are a unique experimental tool to study the properties of the Quark...
Dielectrons produced in ultra-relativistic heavy-ion collisions at the LHC provide a unique probe of...
Dielectrons produced in ultra-relativistic heavy-ion collisions provide a unique probe of the whole ...
Dielectrons are penetrating probes which carry unaffected information on the hot and dense medium cr...
The production of low-mass dielectrons is one of the most promising tools for the investigation of c...
Dielectrons are penetrating probes which carry unaffected information on the hot and dense medium cr...
In ultra-relativistic heavy-ion collisions, correlated dielectron pairs are of particular interest s...
The production of low-mass dielectrons is one of the most promising tools for the understanding of c...
The production of low-mass dielectrons is one of the most promising tools for the investigation of c...
Ultrarelativistic hadron collisions, such as delivered since a couple of years at the Large Hadron C...
Dielectrons are a unique tool to probe several stages of the space-time evolution of the hot and den...
Dielectrons are excellent tools to investigate the properties of the medium created in heavy-ion col...
In ordinary matter, quarks and gluons are confined inside hadrons by the strong interaction. At extr...
Low-mass electron–positron pairs are a unique experimental tool to study the properties of the Quark...
Dielectrons produced in ultra-relativistic heavy-ion collisions at the LHC provide a unique probe of...
Dielectrons produced in ultra-relativistic heavy-ion collisions provide a unique probe of the whole ...
Dielectrons are penetrating probes which carry unaffected information on the hot and dense medium cr...
The production of low-mass dielectrons is one of the most promising tools for the investigation of c...
Dielectrons are penetrating probes which carry unaffected information on the hot and dense medium cr...
In ultra-relativistic heavy-ion collisions, correlated dielectron pairs are of particular interest s...
The production of low-mass dielectrons is one of the most promising tools for the understanding of c...
The production of low-mass dielectrons is one of the most promising tools for the investigation of c...
Ultrarelativistic hadron collisions, such as delivered since a couple of years at the Large Hadron C...
Dielectrons are a unique tool to probe several stages of the space-time evolution of the hot and den...
Dielectrons are excellent tools to investigate the properties of the medium created in heavy-ion col...
In ordinary matter, quarks and gluons are confined inside hadrons by the strong interaction. At extr...
Low-mass electron–positron pairs are a unique experimental tool to study the properties of the Quark...