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Title: Measurements of dielectron production in Au + Au collisions at s N N = 200 GeV from the STAR experiment

Journal Article · · Physical Review. C. Nuclear Physics
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We report on measurements of dielectron (e⁺e⁻) production in Au+Au collisions at a center-of-mass energy of 200 GeV per nucleon-nucleon pair using the STAR detector at RHIC. Systematic measurements of the dielectron yield as a function of transverse momentum (pT) and collision centrality show an enhancement compared to a cocktail simulation of hadronic sources in the low invariant-mass region (Mee < 1GeV/c2). This enhancement cannot be reproduced by the ρ-meson vacuum spectral function. In minimum-bias collisions, in the invariant-mass range of 0.30 – 0.76GeV/c², integrated over the full pT acceptance, the enhancement factor is 1.76±0.06(stat.)±0.26(sys.)±0.29(cocktail). The enhancement factor exhibits weak centrality and pT dependence in STAR's accessible kinematic regions, while the excess yield in this invariant-mass region as a function of the number of participating nucleons follows a power-law shape with a power of 1.44±0.10. Models that assume an in-medium broadening of the ρ-meson spectral function consistently describe the observed excess in these measurements. In addition, we report on measurements of ω- and Φ-meson production through their e⁺e⁻ decay channel. These measurements show good agreement with Tsallis blast-wave model predictions, as well as, in the case of the Φ meson, results through its K⁺K⁻ decay channel. In the intermediate invariant-mass region (1.1 < Mee < 3GeV/c²), we investigate the spectral shapes from different collision centralities. Physics implications for possible in-medium modification of charmed hadron production and other physics sources are discussed.

Research Organization:
Brookhaven National Laboratory (BNL), Upton, NY (United States). Relativistic Heavy Ion Collider (RHIC)
Sponsoring Organization:
USDOE Office of Science (SC), Nuclear Physics (NP)
Contributing Organization:
STAR Collaboration
Grant/Contract Number:
2014CB845400; 2015CB856900; NRF-2012004024
OSTI ID:
1221751
Alternate ID(s):
OSTI ID: 1212493
Report Number(s):
BNL-108358-2015-JA; PRVCAN; R&D Project: PO 004; KB0202012
Journal Information:
Physical Review. C. Nuclear Physics, Vol. 92, Issue 2; ISSN 0556-2813
Publisher:
American Physical Society (APS)Copyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 67 works
Citation information provided by
Web of Science

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Cited By (11)

Probing dense baryon-rich matter with virtual photons journal July 2019
Responses of the chiral-magnetic-effect–sensitive sine observable to resonance backgrounds in heavy-ion collisions journal September 2018
Observation of Excess J / ψ Yield at Very Low Transverse Momenta in Au + Au Collisions at s N N = 200 GeV and U + U Collisions at s N N = 193 GeV journal September 2019
Responses of the chiral-magnetic-effect-sensitive sine observable to resonance backgrounds in heavy-ion collisions text January 2018
Challenges in flow background removal in search for the chiral magnetic effect journal May 2017
Thermal dileptons from coarse-grained transport as fireball probes at SIS energies journal May 2016
Complications in the interpretation of the charge-asymmetry-dependent π flow for the chiral magnetic wave journal January 2020
Back-to-back relative-excess observable to identify the chiral magnetic effect journal January 2020
Challenges in flow background removal in search for the chiral magnetic effect text January 2016
Isolating the chiral magnetic effect from backgrounds by pair invariant mass journal February 2019
Thermal dilepton rates and electrical conductivity of the QGP from the lattice text January 2016


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