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Study of two particle azimuthal correlations ine+e−annihilation at √s=58 GeV

Authors :
S. Wilson
L. E. Piilonen
Saroj Kumar Sahu
J. Rowe
A. Bodek
C. Rosenfeld
M. E. Mattson
S. Behari
J. S. Kang
Dong-Chul Son
N. Takashimizu
S. K. Choi
K. Ohkubo
Tsunehiko Omori
D. Haim
L. M. Chinitz
K. W. Park
T. Nozaki
Hiroyuki Sagawa
S. Kobayashi
P. N. Kirk
S. Ebara
Moo Hyun Lee
M. Oyoshi
D. Y. Kim
Bj Kim
S. Lusin
Stephen L. Olsen
Y. Yamashita
T. Kumita
Yoshimasa Kurihara
H. Miyata
Takashi Sasaki
R. L. Lander
Y. Sakai
C. P. Cheng
C. A. Fry
Winston Ko
C. Velissaris
D. K. Cho
Yasuhiro Sugimoto
Ryuki Tanaka
Y. Takaiwa
T. Ishizuka
Y. S. Chung
M. H. Ye
F. Liu
A. Abashian
S. K. Kim
F. Kajino
Kazumasa Miyano
Susumu Terada
K. Gotow
Y. Fujii
S. S. Myung
A. Murakami
K. B. Lee
Richard Breedon
T. Aso
S. Kanda
K. Ueno
J. Vinson
J. R. Smith
K. L. Sterner
David Stuart
R. C. Walker
Steve Schnetzer
A. Maki
L. Y. Zheng
Kazuo Abe
M. Shirai
S. Matsumoto
Source :
Physical Review D. 52:4872-4876
Publication Year :
1995
Publisher :
American Physical Society (APS), 1995.

Abstract

We have measured the azimuthal correlation of hadrons produced in e(+)e(-) annihilations at root s=58 GeV. In perturbative QCD these correlations are sensitive to the interference between soft gluons emitted at large angles with respect to the event axis. However, Monte Carlo calculations incorporating QCD-inspired hadronization models in which the correlation of interjet particles is treated in a phenomenological manner describe the data well. We also observe that angular ordering of the parton showering in the LUND Monte Carlo program improves the agreement with the data.

Details

ISSN :
05562821
Volume :
52
Database :
OpenAIRE
Journal :
Physical Review D
Accession number :
edsair.doi...........6f457260318da95461bc2265364d8e74