Back to Search Start Over

Charged Particle Multiplicities in Ultra-relativistic Au+Au and Cu+Cu Collisions

Authors :
Alice Mignerey
R. Bindel
H. Seals
Krzysztof Wozniak
A. S. Carroll
R. Verdier
Barbara Wosiek
Christof Roland
K. Gulbrandsen
Wei Li
C. Loizides
A. Sukhanov
A. Szostak
M. Hauer
George Stephans
Bolek Wyslouch
B. Alver
Wit Busza
P. Kulinich
Marguerite Tonjes
G.J. vanNieuwenhuizen
Z. Chai
N. Khan
R. S. Hollis
Burt Holzman
M. A. Stankiewicz
Edward Allen Wenger
C. Reed
I. Sedykh
M. P. Decowski
David Jonathan Hofman
T. Gburek
W. T. Lin
Rachid Nouicer
Andrzej Olszewski
C. Vale
N. George
F. L. H. Wolfs
D. S. Barton
C. E. Smith
A. A. Bickley
J. Sagerer
M. D. Baker
E. Richardson
Gabor Istvan Veres
Peter Steinberg
E. Johnson
S. M. Wyngaardt
A. Iordanova
R. Holynski
V. Chetluru
J. L. Kane
S. Manly
D. Willhelm
R. Pak
C. Halliwell
B. B. Back
Adam Trzupek
E. García
P. Walters
Russell Richard Betts
Conor Henderson
Chia-Ming Kuo
M. Ballintijn
S. S. Vaurynovich
J. Hamblen
Gunther Roland
I. Harnarine
Publication Year :
2006
Publisher :
arXiv, 2006.

Abstract

The PHOBOS collaboration has carried out a systematic study of charged particle multiplicities in Cu+Cu and Au+Au collisions at the Relativistic Heavy-Ion Collider (RHIC) at Brookhaven National Laboratory. A unique feature of the PHOBOS detector is its ability to measure charged particles over a very wide angular range from 0.5 to 179.5 deg. corresponding to |eta<br />Proceedings of "Lake Louise Winter Institute 2006", Lake Louise, Alberta, Canada, February 17-23, 2006, World Scientific 5 pages, 3 figures

Details

Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....1bb13d048a292f8d41d57d9ec274706a
Full Text :
https://doi.org/10.48550/arxiv.nucl-ex/0604017