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Free, publicly-accessible full text available September 1, 2026
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Free, publicly-accessible full text available August 1, 2026
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We report measurements of , and production in collisions at by the STAR experiment in year 2011, corresponding to an integrated luminosity . The results provide precise cross sections, transverse momentum ( ) and rapidity ( ) spectra, as well as cross section ratios for and . The dependence of the yield on charged particle multiplicity has also been measured, offering new insights into the mechanisms of quarkonium production. The data are compared to various theoretical models: the color evaporation model (CEM) accurately describes the production, while the color glass quantum chromodynamics ( ) model overestimates the data, particularly at low . Conversely, the color singlet model (CSM) underestimates the rapidity dependence. These discrepancies highlight the need for further development in understanding the production dynamics of heavy quarkonia in high-energy hadronic collisions. The trend in the multiplicity dependence is consistent with CGC/saturation and string percolation models or production happening in multiple parton interactions modeled by 8.more » « lessFree, publicly-accessible full text available August 1, 2026
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The STAR Collaboration reports precise measurements of the longitudinal double-spin asymmetry, , for dijet production with at least one jet at intermediate pseudorapidity in polarized proton-proton collisions at a center-of-mass energy of 200 GeV. This study explores partons scattered with a longitudinal momentum fraction ( ) from 0.01 to 0.5, which are predominantly characterized by interactions between high- valence quarks and low- gluons. The results are in good agreement with previous measurements at 200 GeV with improved precision and are found to be consistent with the predictions of global analyses that find the gluon polarization to be positive. In contrast, the negative gluon polarization solution from the JAM Collaboration is found to be strongly disfavored.more » « less
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Free, publicly-accessible full text available August 1, 2026
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A<sc>bstract</sc> The pseudorapidity distribution of charged hadrons produced in Au+Au collisions at a center-of-mass energy of$$ \sqrt{{\textrm{s}}_{\textrm{NN}}} $$ = 200 GeV is measured using data collected by the sPHENIX detector. Charged hadron yields are extracted by counting cluster pairs in the inner and outer layers of the Intermediate Silicon Tracker, with corrections applied for detector acceptance, reconstruction efficiency, combinatorial pairs, and contributions from secondary decays. The measured distributions cover |η|<1.1 across various centralities, and the average pseudorapidity density of charged hadrons at mid-rapidity is compared to predictions from Monte Carlo heavy-ion event generators. This result, featuring full azimuthal coverage at mid-rapidity, is consistent with previous experimental measurements at the Relativistic Heavy Ion Collider, thereby supporting the broader sPHENIX physics program.more » « lessFree, publicly-accessible full text available August 1, 2026
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