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High transverse momentum triggered correlations over a large pseudorapidity acceptance in Au + Au collisions at square root(s(NN)) = 200 GeV.

Authors :
Alver B
Back BB
Baker MD
Ballintijn M
Barton DS
Betts RR
Bickley AA
Bindel R
Busza W
Carroll A
Chai Z
Chetluru V
Decowski MP
García E
Gburek T
George N
Gulbrandsen K
Halliwell C
Hamblen J
Hauer M
Henderson C
Hofman DJ
Hollis RS
Hołyński R
Holzman B
Iordanova A
Johnson E
Kane JL
Khan N
Kulinich P
Kuo CM
Li W
Lin WT
Loizides C
Manly S
Mignerey AC
Nouicer R
Olszewski A
Pak R
Reed C
Roland C
Roland G
Sagerer J
Seals H
Sedykh I
Smith CE
Stankiewicz MA
Steinberg P
Stephans GS
Sukhanov A
Tonjes MB
Trzupek A
Vale C
van Nieuwenhuizen GJ
Vaurynovich SS
Verdier R
Veres GI
Walters P
Wenger E
Wolfs FL
Wosiek B
Woźniak K
Wysłouch B
Source :
Physical review letters [Phys Rev Lett] 2010 Feb 12; Vol. 104 (6), pp. 062301. Date of Electronic Publication: 2010 Feb 11.
Publication Year :
2010

Abstract

A measurement of two-particle correlations with a high transverse momentum trigger particle (p(T)(trig) > 2.5 GeV/c) is presented for Au+Au collisions at square root(s(NN)) = 200 GeV over the uniquely broad longitudinal acceptance of the PHOBOS detector (-4 < Delta eta < 2). A broadening of the away-side azimuthal correlation compared to elementary collisions is observed at all Delta eta. As in p+p collisions, the near side is characterized by a peak of correlated partners at small angle relative to the trigger particle. However, in central Au+Au collisions an additional correlation extended in Delta eta and known as the "ridge" is found to reach at least |Delta eta| approximately = 4. The ridge yield is largely independent of Delta eta over the measured range, and it decreases towards more peripheral collisions. For the chosen (p(T)(trig) cut, the ridge yield is consistent with zero for events with less than roughly 100 participating nucleons.

Details

Language :
English
ISSN :
1079-7114
Volume :
104
Issue :
6
Database :
MEDLINE
Journal :
Physical review letters
Publication Type :
Academic Journal
Accession number :
20366815
Full Text :
https://doi.org/10.1103/PhysRevLett.104.062301