The PHENIX experiment at the relativistic heavy ion collider (RHIC) finished data taking in 2016. However, large datasets collected in different collision systems (p+p, p+A and A+A) at different energies (√sNN = 19-500 GeV) during the last years of the detector operation are actively analysed by the collaboration and bring a wealth of new experimental results. This paper reviews the most recent PHENIX results on the light flavour hadron production, yields and angular correlations of the direct photons in heavy-ion collisions as well as on the search for the onset of collectivity in high multiplicity p+p and p+A collisions
The PHENIX experiment has published direct photon yields and elliptic flow coefficients v2 from Au+A...
Volume: 70 Host publication title: 1st International Conference on New Frontiers in PhysicsPeer revi...
Results from the PHENIX experiment on direct-photon production in Au+Au collisions at sqrt{s_{NN}} =...
The PHENIX experiment at the relativistic heavy ion collider (RHIC) finished data taking in 2016. Ho...
The PHENIX experiment at the relativistic heavy ion collider (RHIC) finished data taking in 2016. Ho...
Results from the PHENIX experiment at RHIC on direct photon production in p+p, d+Au, and Au+Au colli...
The suppression of hadrons with large transverse momentum ($p_{\rm T}$) in central Au+Au collisions ...
When studying the initial state and evolution of the matter created in relativistic heavy ion collis...
It has been established that "hard probes", observables involving high-momentum transfer, provide us...
Direct photons are a powerful probe to study the properties of the unique matter created in ultrarel...
Recent progress in direct photon measurements at RHIC-PHENIX detector is presented. In p + p collisi...
A systematic study of particle production at large transverse momentum with the PHENIX experiment at...
Electromagnetic probes are arguably the most universal tools to study the different physics processe...
PHENIX has measured high transverse momentum (pT) identified hadrons in different collision species ...
Direct photons are a unique probe to study the properties of the medium created in heavy ion collisi...
The PHENIX experiment has published direct photon yields and elliptic flow coefficients v2 from Au+A...
Volume: 70 Host publication title: 1st International Conference on New Frontiers in PhysicsPeer revi...
Results from the PHENIX experiment on direct-photon production in Au+Au collisions at sqrt{s_{NN}} =...
The PHENIX experiment at the relativistic heavy ion collider (RHIC) finished data taking in 2016. Ho...
The PHENIX experiment at the relativistic heavy ion collider (RHIC) finished data taking in 2016. Ho...
Results from the PHENIX experiment at RHIC on direct photon production in p+p, d+Au, and Au+Au colli...
The suppression of hadrons with large transverse momentum ($p_{\rm T}$) in central Au+Au collisions ...
When studying the initial state and evolution of the matter created in relativistic heavy ion collis...
It has been established that "hard probes", observables involving high-momentum transfer, provide us...
Direct photons are a powerful probe to study the properties of the unique matter created in ultrarel...
Recent progress in direct photon measurements at RHIC-PHENIX detector is presented. In p + p collisi...
A systematic study of particle production at large transverse momentum with the PHENIX experiment at...
Electromagnetic probes are arguably the most universal tools to study the different physics processe...
PHENIX has measured high transverse momentum (pT) identified hadrons in different collision species ...
Direct photons are a unique probe to study the properties of the medium created in heavy ion collisi...
The PHENIX experiment has published direct photon yields and elliptic flow coefficients v2 from Au+A...
Volume: 70 Host publication title: 1st International Conference on New Frontiers in PhysicsPeer revi...
Results from the PHENIX experiment on direct-photon production in Au+Au collisions at sqrt{s_{NN}} =...