Measurement of the impact-parameter dependent azimuthal anisotropy in coherent photoproduction in PbPb collisions at = 5.02 TeV
arXiv:2405.14525 · doi:10.1016/j.physletb.2024.139017
Abstract
This Letter presents the first measurement of the impact-parameter dependent angular anisotropy in the decay of coherently photoproduced mesons. The mesons are reconstructed through their decay into pion pairs. The measured anisotropy corresponds to the amplitude of the modulation, where is the angle between the two vectors formed by the sum and the difference of the transverse momenta of the pions, respectively. The measurement was performed by the ALICE Collaboration at the LHC using data from ultraperipheral PbPb collisions at a center-of-mass energy of TeV per nucleon pair. Different impact-parameter regions are selected by classifying the events in nuclear-breakup classes. The amplitude of the modulation is found to increase by about one order of magnitude from large to small impact parameters. Theoretical calculations describe the measured anisotropy and its impact-parameter dependence as the result of a quantum interference effect at the femtometer scale, arising from the ambiguity regarding which of the nuclei is the photon source in the interaction.
21 pages, 3 captioned figures, 2 tables, authors from page 15, published version, figures at http://alice-publications.web.cern.ch/node/10964
References in corpus (6)
- The Color Glass Condensate
- The Physics of Ultraperipheral Collisions at the LHC
- Imaging the nucleus with high-energy photons
- Probing the linear polarization of photons in ultraperipheral heavy ion collisions
- Impact parameter dependence of the azimuthal asymmetry in lepton pair production in heavy ion collisions
- Observation of Two-source Interference in the Photoproduction Reaction
Cited by in corpus (3)
- Quantum Information meets High-Energy Physics: Input to the update of the European Strategy for Particle Physics
- Exclusive quarkonium photoproduction: predictions with the Balitsky-Kovchegov equation including the full impact-parameter dependence
- Influence of the residual magnetic field on the azimuthal distribution of final-state particles in photon-nuclear processes