Measurement of $e^+e^-$ Momentum and Angular Distributions from Linearly Polarized Photon Collisions
STAR Collaboration: M. S. Abdallah, B. E. Aboona, J. Adam, L., Adamczyk, J. R. Adams, J. K. Adkins, G. Agakishiev, I. Aggarwal, M. M., Aggarwal, Z. Ahammed, I. Alekseev, D. M. Anderson, A. Aparin, E. C., Aschenauer, M. U. Ashraf, F. G. Atetalla, A. Attri, G. S. Averichev, V.

TL;DR
This paper experimentally investigates the Breit-Wheeler process using ultra-peripheral Au+Au collisions, observing electron-positron pairs and their angular distributions, providing insights into photon polarization effects and strong electromagnetic fields.
Contribution
First experimental measurement of $e^+e^-$ momentum and angular distributions from linearly polarized photon collisions at high energies, confirming QED predictions in ultra-strong fields.
Findings
Large fourth-order angular modulation observed
Invariant mass distribution shows no vector mesons
Transverse momentum peaks at low values with centrality dependence
Abstract
The Breit-Wheeler process which produces matter and anti-matter from photon collisions is investigated experimentally through the observation of 6085 exclusive electron-positron pairs in ultra-peripheral Au+Au collisions at GeV. The measurements reveal a large fourth-order angular modulation of and smooth invariant mass distribution absent of vector mesons (, and ) at the experimental limit of of the observed yields. The differential cross section as a function of pair transverse momentum peaks at low value with MeV and displays a significant centrality dependence. These features are consistent with QED calculations for the collision of linearly polarized photons quantized from the extremely strong electromagnetic fields…
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