arXiv:2302.11126·v2·High Energy Physics — Phenomenology
Global QCD Analysis and Dark Photons
N. T. Hunt-Smith🇦🇺 · W. Melnitchouk🇦🇺 · N. Sato🇺🇸 · A. W. Thomas🇦🇺 · X. G. Wang🇦🇺 · M. J. White🇦🇺
Abstract
We perform a global QCD analysis of high energy scattering data within the JAM Monte Carlo framework, including a coupling to a dark photon that augments the standard model electroweak coupling via kinetic mixing with the hypercharge boson. Including the most recent measurement of the anomalous magnetic moment of the muon as a constraint, we find a significant reduction in the combined , favoring the inclusion of a dark photon, with a statistical significance in excess of 8. With respect to the experimental data, the improvements in the theoretical predictions are spread across a wide range of and , with the largest improvement corresponding to neutral current data from HERA, while the best fit yields a value of which significantly reduces the disagreement with the latest experimental determination. The best fit yields a dark photon mass in the range 4.2--6.2 GeV and a mixing parameter of order 0.1.
Comments: 15 pages, 6 figures, 1 table