Production of $b\bar{b}$ at forward rapidity in $p$+$p$ collisions at $\sqrt{s}=510$ GeV
U. Acharya, A. Adare, C. Aidala, N.N. Ajitanand, Y. Akiba, R. Akimoto,, M. Alfred, N. Apadula, Y. Aramaki, H. Asano, E.T. Atomssa, T.C. Awes, B., Azmoun, V. Babintsev, M. Bai, N.S. Bandara, B. Bannier, K.N. Barish, S., Bathe, A. Bazilevsky, M. Beaumier, S. Beckman, R. Belmont

TL;DR
This paper measures the production cross section of bottom quark-antiquark pairs in proton-proton collisions at 510 GeV using muon pair detection, providing data consistent with QCD predictions and insights into production mechanisms.
Contribution
First measurement of $b\bar{b}$ production cross section at 510 GeV in the forward rapidity region using like-sign muon pairs, with comparison to theoretical models.
Findings
Measured differential cross section for like-sign muons in specified kinematic range.
Total $b\bar{b}$ production cross section consistent with QCD calculations.
Azimuthal correlations suggest flavor creation and excitation dominate over gluon splitting.
Abstract
The cross section of bottom quark-antiquark () production in + collisions at GeV is measured with the PHENIX detector at the Relativistic Heavy Ion Collider. The results are based on the yield of high mass, like-sign muon pairs measured within the PHENIX muon arm acceptance (). The signal is extracted from like-sign dimuons by utilizing the unique properties of neutral meson oscillation. We report a differential cross section of nb for like-sign muons in the rapidity and ranges and GeV/, and dimuon mass of 5--10 GeV/. The extrapolated total cross section at this energy for production is $13.1 \pm 0.6~(\mbox{stat}) \pm 1.5~(\mbox{syst}) \pm…
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