Production of true para-muonium in linearly polarized photon fusions
arXiv:2401.04681 · doi:10.1103/PhysRevD.109.054022
Abstract
True muonium (TM) -- the bound state of -- has not been discovered yet. It was demonstrated that searching for TM via fusions in heavy ion collisions is feasible due to the enhancement of the atom number. We study the production of the true para-muonium (pTM) in the collisions of linearly polarized photons in the experiments of heavy-ion collisions, calculate the production rate as well as the transverse spectrum of pTM, and explore the discovery potential in nuclear experiments. Our results show that there is a significant correlation between the linearly polarized photon distribution and the transverse momentum distribution of pTM. The optimal kinematic region of the generated pTM is identified, which can provide a theoretical guide to the detection of pTM in experiments.
7 pages, 10 figures, 1 table. Accepted for publication in Physical Review D
References in corpus (8)
- The Physics of Ultraperipheral Collisions at the LHC
- Muonic hydrogen and MeV forces
- Production of the Smallest QED Atom: True Muonium (mu^+ mu^-)
- Spectroscopy as a test of Coulomb's law - A probe of the hidden sector
- Probing the linear polarization of photons in ultraperipheral heavy ion collisions
- gamma-UPC: Automated generation of exclusive photon-photon processes in ultraperipheral proton and nuclear collisions with varying form factors
- The Sivers single-spin asymmetry in photon-jet production
- Bepcii and Besiii