Electromagnetic Radiation from QCD Matter: Theory Overview
arXiv:1601.02563
Abstract
Recent theory developments in electromagnetic radiation from relativistic heavy-ion collisions are reviewed. Electromagnetic observables can serve as a thermometer, a viscometer, and tomographic probes to the collision system. The current status of the "direct photon flow puzzle" is highlighted.
8 pages, 4 figures; to appear in the proceedings for the Quark Matter 2015 conference, Kobe, Japan
References in corpus (14)
- Pseudo-Critical Enhancement of Thermal Photons in Relativistic Heavy-Ion Collisions
- Production and Elliptic Flow of Dileptons and Photons in the semi-Quark Gluon Plasma
- Photon production from an anisotropic quark-gluon plasma
- Universal Parametrization of Thermal Photon Rates in Hadronic Matter
- Low-Energy Thermal Photons from Meson-Meson Bremsstrahlung
- Photon Emission from a Momentum Anisotropic Quark-Gluon Plasma
- A coarse-graining approach for dilepton production at SPS energies
- Photon and dilepton production at the Facility for Antiproton and Ion Research and the beam energy scan program at the Relativistic Heavy-Ion Collider using coarse-grained microscopic transport simulations
- Event-by-event direct photon anisotropic flow in relativistic heavy-ion collisions
- Jet transport and photon bremsstrahlung via longitudinal and transverse scattering
- Recent developments in the theory of electromagnetic probes in relativistic heavy-ion collisions
- Electromagnetic recombination spectra at the quark-hadron phase transition
- Probing the non-equilibrium dynamics of hot and dense QCD with dileptons
- Dilepton emission in high-energy heavy-ion collisions with dissipative hydrodynamics
Cited by in corpus (6)
- Parametric estimate of the relative photon yields from the Glasma and the Quark-Gluon Plasma in heavy-ion collisions
- Studying QGP with flow: A theory overview
- Effect of magnetic field on the photon radiation from quark-gluon plasma in heavy ion collisions
- Thermal photon production from gluon fusion induced by magnetic fields in relativistic heavy-ion collisions
- Photons from thermalizing matter in heavy ion collisions
- Electromagnetic radiation and collectivity in small quark-gluon droplets