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Studies of jet production rates in e+e- annihilation at Ecm=29 GeV
Authors
G Abrams
CE Adolphsen
+98 more
C Akerlof
JP Alexander
M Alvarez
AR Baden
J Ballam
BC Barish
T Barklow
BA Barnett
J Bartelt
S Bethke
D Blockus
G Bonvicini
A Boyarski
J Boyer
B Brabson
A Breakstone
JM Brom
F Bullos
PR Burchat
DL Burke
F Butler
F Calvino
RJ Cence
J Chapman
D Cords
DP Coupal
HC DeStaebler
DE Dorfan
JM Dorfan
PS Drell
GJ Feldman
E Fernandez
RC Field
WT Ford
C Fordham
F Frey
D Fujino
KK Gan
G Gidal
T Glanzman
G Goldhaber
A Green
P Grosse-Wiesmann
J Haggerty
G Hanson
R Harr
FA Harris
CM Hawkes
K Hayes
D Herrup
CA Heusch
T Himel
M Hoenk
D Hutchinson
J Hylen
WR Innes
M Jaffre
JA Jaros
I Juricic
JA Kadyk
D Karlen
J Kent
SR Klein
S Komamiya
W Koska
W Kozanecki
AJ Lankford
RR Larsen
ME Levi
Z Li
AM Litke
V Lüth
JAJ Matthews
DI Meyer
BD Milliken
KC Moffeit
L Müller
J Nash
ME Nelson
D Nitz
KF O'Shaughnessy
H Ogren
SI Parker
C Peck
A Petersen
M Petradza
FC Porter
P Rankin
K Riles
DR Rust
HFW Sadrozinski
TL Schalk
WB Schmidke
AS Schwarz
A Seiden
JG Smith
A Snyder
E Soderstrom
Publication date
1 September 1989
Publisher
eScholarship, University of California
Abstract
Production rates of multijet hadronic final states are studied in e+e- annihilation at 29 GeV center of mass energy. QCD shower model calculations with exact first order matrix element weighting at the first gluon vertex are capable of reproducing the observed multijet event rates over a large range of jet pair masses. The method used to reconstruct jets is well suited for directly comparing experimental jet rates with parton rates calculated in perturbative QCD. Evidence for the energy dependene of αs is obtained by comparing the observed production rates of 3-jet events with results of similar studies performed at higher center of mass energies. © 1989 Springer-Verlag
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Last time updated on 25/12/2021