11 citations · 13 across the 4 of their papers we have counts for
20 papers
Improving constraints on gluon spin-momentum correlations in transversely polarized protons via midrapidity open-heavy-flavor electrons in collisions at GeV
N. J. Abdulameer, U. Acharya, C. Aidala +321
Polarized proton-proton collisions provide leading-order access to gluons, presenting an opportunity to constrain gluon spin-momentum correlations within transversely polarized pro…
Measurements of second-harmonic Fourier coefficients from azimuthal anisotropies in , Au, Au, and HeAu collisions at GeV
N. J. Abdulameer, U. Acharya, A. Adare +389
Recently, the PHENIX Collaboration has published second- and third-harmonic Fourier coefficients and for midrapidity () charged hadrons in 0\%--5\% central $p…
Study of -meson production in Al, Au, Au, and HeAu collisions at GeV
U. Acharya, A. Adare, C. Aidala +367
Small nuclear collisions are mainly sensitive to cold-nuclear-matter effects; however, the collective behavior observed in these collisions shows a hint of hot-nuclear-matter effec…
Measurement of nuclear modification at backward and forward rapidity in , Al, and Au collisions at GeV
U. A. Acharya, C. Aidala, Y. Akiba +313
Suppression of the nuclear-modification factor has been seen as a trademark signature of final-state effects in large collision systems for decades. In small systems, the nuc…
Transverse-single-spin asymmetries of charged pions at midrapidity in transversely polarized collisions at GeV
U. A. Acharya, C. Aidala, Y. Akiba +307
In 2015, the PHENIX collaboration has measured single-spin asymmetries for charged pions in transversely polarized proton-proton collisions at the center of mass energy of $\sqrt{s…
Transverse single spin asymmetries of forward neutrons in , Al, and Au collisions at GeV as a function of transverse and longitudinal momenta
U. A. Acharya, C. Aidala, Y. Akiba +308
In 2015 the PHENIX collaboration at the Relativistic Heavy Ion Collider recorded , Al, and Au collision data at center of mass energies of $\sqrt{s_{_{NN}}}=20…