First results from RHIC-PHENIX

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2001-08-01
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Ghosh, Tarun Kanti
Belikov, Sergey
Hill, John
Lajoie, John
Lebedev, Alexandre
Ogilvie, Craig
Petridis, Athanasios
Rosati, Marzia
Wohn, F.
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Ogilvie, Craig
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Physics and Astronomy
Physics and astronomy are basic natural sciences which attempt to describe and provide an understanding of both our world and our universe. Physics serves as the underpinning of many different disciplines including the other natural sciences and technological areas.
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Physics and Astronomy
Abstract

The PHENIX experiment consists of a large detector system located at the newly commissioned relativistic heavy ion collider (RHIC) at the Brookhaven National Laboratory. The primary goal of the PHENIX experiment is to look for signatures of the QCD prediction of a deconfined high-energy-density phase of nuclear matter quark gluon plasma. PHENIX started data taking for Au+Au collisions at √sNN = 130 GeV in June 2000. The signals from the beam-beam counter (BBC) and zero degree calorimeter (ZDC) are used to determine the centrality of the collision. A Glauber model reproduces the ZDC spectrum reasonably well to determine the participants in a collision. Charged particle multiplicity distribution from the first PHENIX paper is compared with the other RHIC experiment and the CERN, SPS results. Transverse momentum of photons are measured in the electro-magnetic calorimeter (EMCal) and preliminary results are presented. Particle identification is made by a time of flight (TOF) detector and the results show clear separation of the charged hadrons from each other.

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This article is published as Ghosh, Tarun Kanti, K. Adcox, S. S. Adler, N. Ajitanand, Y. Akiba, J. Alexander, L. Aphecetche et al. "First results from RHIC-PHENIX." Pramana 57, no. 2 (2001): 355-369. Posted with permission.

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Mon Jan 01 00:00:00 UTC 2001