Photoproduction at the Relativistic Heavy Ion Collider with STAR
arXiv:0907.2351 · doi:10.1016/j.nuclphysa.2009.10.044
Abstract
The strong electromagnetic fields of short duration associated with relativistic heavy ions make a heavy-ion collider a unique tool to study two-photon and photonuclear collisions. In this talk, we introduce the principles of photoproduction at hadron colliders, review recent results from RHIC on meson and ee production. At RHIC, STAR has studied exclusive vector meson production and production accompanied by electromagnetic dissociation of both nuclei in collisions of AuAu at 62, 130 and 200 GeV. Recent results suggest the validity of the Glauber calculations for the vector meson photoproduction and incosistency of the model based on the parton saturation phenomenon. The measurements are a lso sensitive to interference between production on the two nuclei: either ion can be the photon emitter or the target. The level of observed interference suggests that the final state wave function carries information about all possible decays long after the decay occurs. We also observe coherent photoproduction of a state which may be associated with (1450).
4 pages 2 figures - To appear in the conference proceedings for Quark Matter 2009, March 30 - April 4, Knoxville, Tennessee
References in corpus (5)
- The Physics of Ultraperipheral Collisions at the LHC
- Physics of Ultra-Peripheral Nuclear Collisions
- The QCD Pomeron in Ultraperipheral Heavy Ion Collisions: IV. Photonuclear Production of Vector Mesons
- Observation of Two-source Interference in the Photoproduction Reaction
- Photoproduction in Ultra-Peripheral Heavy Ion Collisions at STAR