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Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
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Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
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Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector

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Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector
Paper

Measurement of the transverse energy density in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV with the sPHENIX detector

Y Go,
L Ma,
X Yu,
W Ma,
X Li,
Y Hu,
Z Ye,
2025
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Overview
This paper reports measurements of the transverse energy per unit pseudorapidity (\\(dE_{T}/d\\eta\\)) produced in Au+Au collisions at \\(\\sqrt{s_{NN}} = 200\\) GeV, performed with the sPHENIX detector at the Relativistic Heavy Ion Collider (RHIC). The results cover the pseudorapidity range \\(\\left|\\eta\\right| < 1.1\\) and constitute the first such measurement performed using a hadronic calorimeter at RHIC. Measurements of \\(dE_{T}/d\\eta\\) are presented for a range of centrality intervals and the average \\(dE_{T}/d\\eta\\) as a function of the number of participating nucleons, \\(N_{\\mathrm{part}}\\), is compared to a variety of Monte Carlo heavy-ion event generators. The results are in agreement with previous measurements at RHIC, and feature an improved granularity in \\(\\eta\\) and improved precision in low-\\(N_{\\mathrm{part}}\\) events.
Publisher
Cornell University Library, arXiv.org