Ultra-relativistic heavy ions collisions allow to reach an hot and dense matter. This new state, called Quarks and Gluons Plasma (QGP), would exist at the first moment of our universe according to the Big Bang theory. The PHENIX experiment, one of the interaction point of the RHIC collider at Brookhaven National Laboratory (USA), aims to study the QGP's signatures. Photons don't interact strongly with the matter and so are an accurate tool to explore the phase of QGP. Moreover photons are emitted during all the phases of the nuclear collision: from the initial state to the final hadronization. We will present a direct photon, produced by hard scattering process in the beginning of the collision, identification method (SICA, Spectroscopic Is...
When studying the initial state and evolution of the matter created in relativistic heavy ion collis...
The strong interaction theory, Quantum Chromodynamic (QCD), predicts a new phase of nuclearmatter at...
Results from the PHENIX experiment at RHIC on direct photon production in p+p, d+Au, and Au+Au colli...
The primary goal of heavy ion physics is the study of the Quark Gluon Plasma (QGP). In this exotic s...
This thesis discusses one of the probes of a Quark Gluon Plasma (QGP): direct photon emission. The ...
Results from the PHENIX experiment on direct-photon production in Au+Au collisions at sqrt{s_{NN}} =...
At the LHC, strong interaction is studied by doing collisions of high energy particles. In the case ...
Direct photons have been proposed as a promising signature for the quark-gluon plasma (QGP) formatio...
Direct photons have been proposed as a promising signature for the quark-gluon plasma (QGP) formatio...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
Thermal photons radiated in heavy-ion collisions represent an important signal for a recently discov...
Quantum Chromo Dynamics is the theory associated to the strong interaction in the standard model. It...
Various pion and photon production mechanisms in high-energy nuclear collisions at RHIC and LHC are ...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The direct photon spectrum measured by the PHENIX collaboration in Au + Au collisions at sqrt{s_{NN}...
When studying the initial state and evolution of the matter created in relativistic heavy ion collis...
The strong interaction theory, Quantum Chromodynamic (QCD), predicts a new phase of nuclearmatter at...
Results from the PHENIX experiment at RHIC on direct photon production in p+p, d+Au, and Au+Au colli...
The primary goal of heavy ion physics is the study of the Quark Gluon Plasma (QGP). In this exotic s...
This thesis discusses one of the probes of a Quark Gluon Plasma (QGP): direct photon emission. The ...
Results from the PHENIX experiment on direct-photon production in Au+Au collisions at sqrt{s_{NN}} =...
At the LHC, strong interaction is studied by doing collisions of high energy particles. In the case ...
Direct photons have been proposed as a promising signature for the quark-gluon plasma (QGP) formatio...
Direct photons have been proposed as a promising signature for the quark-gluon plasma (QGP) formatio...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
Thermal photons radiated in heavy-ion collisions represent an important signal for a recently discov...
Quantum Chromo Dynamics is the theory associated to the strong interaction in the standard model. It...
Various pion and photon production mechanisms in high-energy nuclear collisions at RHIC and LHC are ...
In the Standard Model of particle physics, elementary constituents of matter identified to date are ...
The direct photon spectrum measured by the PHENIX collaboration in Au + Au collisions at sqrt{s_{NN}...
When studying the initial state and evolution of the matter created in relativistic heavy ion collis...
The strong interaction theory, Quantum Chromodynamic (QCD), predicts a new phase of nuclearmatter at...
Results from the PHENIX experiment at RHIC on direct photon production in p+p, d+Au, and Au+Au colli...