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Measurement ofWandZboson production cross sections inpp¯collisions ats=1.8TeV

Authors :
S. Youssef
S. Choi
A. Sanchez-Hernandez
Robert Kehoe
P. Bloom
J. A. Wightman
N. I. Bojko
J. S. Hoftun
K. Davis
J. N. Butler
P. D. Grannis
H. Piekarz
J. M. Hauptman
Cecilia Elena Gerber
Eunil Won
V. V. Babintsev
L. Lueking
D. Buchholz
B. Baldin
C. S. Mishra
T. Fahland
Y. Ducros
J. B. Singh
Sergey Kuleshov
Victor Daniel Elvira
T. G. Trippe
Edilamar Menezes de Oliveira
Jianming Qian
G. Eppley
I. Adam
P. Rubinov
K. Del Signore
G. Guglielmo
P. Tamburello
Anna Goussiou
Pushpalatha C Bhat
Sharon Hagopian
K. Gounder
Vasken Hagopian
H. da Motta
J. G.R. Lima
E. Flattum
H. D. Wahl
Winston Ko
H. Weerts
Tong Hu
Y. Fisyak
B. Lauer
M. A.C. Cummings
A. K.A. Maciel
E. Oltman
B. Hoeneisen
Lee Sawyer
E. Smith
P. M. Tuts
Lev Dudko
A. S. Ito
B. Gibbard
Y. Gershtein
K. W. Merritt
Gregory R Snow
J. F. Bartlett
R. W. Stephens
Marvin Johnson
Joan A. Guida
V. Manankov
A. V. Kozelov
R. Piegaia
Y. M. Park
J. Sculli
S.A. Kahn
Robert Hirosky
Alexander Belyaev
V. Sirolenko
Meenakshi Narain
R. Snihur
T. Joffe-Minor
F. Lobkowicz
F. Stichelbaut
M. Demarteau
Heriberto Castilla-Valdez
G. Di Loreto
V. Oguri
M. Merkin
C. Klopfenstein
M. H.G. Souza
S. Krzywdzinski
Andrew White
H. E. Fisk
Z. Wu
M. L. Stevenson
P. Yepes
A. L. Lyon
Shuichi Kunori
W. Y. Chen
G. Gutierrez
D. Cults
K. A. Johns
D. Denisov
C. Cretsinger
Vladimir Gavrilov
A. Narayanan
H. E. Montgomery
Z. Zhou
J. Solomon
M. Strovink
J. Warchol
A. Zylberstejn
Gordon Watts
V. Vaniev
A. Jonckheere
Gilvan Alves
George R. Kalbfleisch
A. P. Vorobiev
Stephan Linn
H. Greenlee
M. Sosebee
Srinivasan Rajagopalan
Thomas Ferbel
Nikos Varelas
T. Rockwell
Iain Alexander Bertram
D. Shpakov
N. Oshima
A. Bross
O. V. Eroshin
Phillip Gutierrez
Daria Zieminska
V. S. Narasimham
Michael Rijssenbeek
John Hobbs
Dhiman Chakraborty
J. Bantly
M. R. Adams
P. Hanlet
J. V.D. Wirjawan
S. R. Dugad
D. Fein
Young-Sang Yu
K. M. Mauritz
Stephen Wimpenny
N. Parua
V.V. Abramov
M. Bhattacharjee
Y. Pischalnikov
Ulrich Heintz
R. L. McCarthy
K. Genser
P.F. Ermolov
Don Lincoln
Erich Varnes
P. I. Goncharov
Matthew Jones
Daniel John Karmgard
P. Z. Quinlas
Howard Gordon
P. Yamin
Andrew Brandt
R. Engelmann
A. A. Mayorov
V. S. Burtovoi
K. C. Frame
O. Ramirez
Elizabeth Gallas
T. McMahon
H. Jostlein
E. A. Kozlovsky
H.E. Miettinen
Arnaud Lucotte
S. Mani
Rajendran Raja
M. Diesburg
S. Reucroft
M. K. Fatyga
G. Steinbrück
J. Snow
C. Yoshikawa
Peter Nemethy
M. Roco
S. P. Denisov
P. Grudberg
C. Miao
D. Owen
G. Wang
Alberto Santoro
A. Sznaider
R. Madden
Jing Li
M. R. Krishnaswamy
Peter W. Draper
Neeti Parashar
H. Haggerty
Randy Ruchti
T. Marshall
R. J. Madaras
R. Hernández-Montoya
F. Hsieh
N.V. Mokhov
A. R. Clark
J. Tarazi
A. Para
Y. H. Zhou
M. Zielinski
L. Babukhadia
G. E. Forden
A. P. Heinson
B. Zhang
Sergey Chekulaev
D. A. Stoyanova
N. Sotnikova
Brad Abbott
J. Krane
R. E. Hall
J. L. González Solís
Gervasio Gomez
Z. Casilum
M. Abolins
S. N. Gurzhiev
D. P. Stoker
P. Gartung
C. Shaffer
D. Cullen-Vidal
N. N. Biswas
S. Chopra
P. Mooney
Darien Wood
B. S. Acharya
Viatcheslav Stolin
V. N. Evdokimov
N. K. Mondal
H. T. Diehl
H. Singh
Nicholas John Hadley
D.S. Koltick
A. Boehnlein
S. Blessing
J. Ellison
S. Fuess
Scott Snyder
J. T. Linnemann
R. Markeloff
R. K. Shivpuri
D. R. Claes
V. A. Bezzubov
J. P. Negret
M. Tartaglia
S. Feher
R. P. Smith
Kaushik De
A. Zieminski
Michael Shupe
S. Y. Jun
T. L.T. Thomas
A. V. Kotwal
Harrison Prosper
J. M. Guida
D. Hedin
M. Fortner
J. Perkins
Emanuela Barberis
L. T. Goss
R. D. Schamberger
S. C. Loken
P. Padley
Alexey Volkov
James H Cochran
N. Amos
Mitchell Wayne
H. Schellman
J. M. Kohli
Stefan Grünendahl
J. Thompson
B. Gómez
L. Magaña-Mendoza
Z. H. Zhu
A. V. Kostritskiy
Sissel Hansen
C. Murphy
L. Coney
T. Heuring
E. W. Anderson
Q. Z. Li
Raymond Brock
Boaz Klima
Allen Mincer
D. Norman
Sebastian Grinstein
Y. Kulik
S. Willis
H. A. Neal
H. C. Shankar
B. May
A. N. Galyaev
K. Yip
B. Gobbi
Anurag Gupta
Jinhong Yu
T. Yasuda
A.S. Dyshkant
W. E. Cooper
M. Chung
J. Jaques
J. Womersley
D. Karmanov
E. G. Zverev
Brajesh C Choudhary
K. S. Hahn
Greg Landsberg
Richard Breedon
T. L. Geld
M. Paterno
A. Baden
G. C. Blazey
R. Yamada
S. H. Ahn
F. Landry
John Rutherfoord
J. McKinley
Wagner Carvalho
F. Borcherding
Miguel Mostafa
M. M. Baarmand
Sarah Catherine Eno
F. Nang
Richard B. Lipton
R. J. Genik
D. Edmunds
M. D. Peters
L. Oesch
Michael A. Strauss
S. A. Jerger
C. Boswell
A. Leflat
Suman Bala Beri
W. G. Cobau
M. I. Martin
J. McDonald
Philip Baringer
S. Banerjee
B. G. Pope
Elizaveta Shabalina
J. T. White
C. K. Jung
T. McKibben
R. Jesik
D. Green
H. L. Melanson
S. Prolopopescu
S. K. Kim
J. H. Christenson
K. Streets
Vipin Bhatnagar
R. Partridge
H. S. Mao
D. L. Adams
B. Pawlik
D. Casey
J. Kotcher
O. I. Dahl
N. Graf
Source :
Physical Review D. 60
Publication Year :
1999
Publisher :
American Physical Society (APS), 1999.

Abstract

D\O{} has measured the inclusive production cross section of W and Z bosons in a sample of 13 ${\mathrm{pb}}^{\ensuremath{-}1}$ of data collected at the Fermilab Tevatron. The cross sections, multiplied by their leptonic branching fractions, for production in $p\overline{p}$ collisions at $\sqrt{s}=1.8$ TeV are ${\ensuremath{\sigma}}_{W}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{W}e\ensuremath{\nu})=2.36\ifmmode\pm\else\textpm\fi{}0.02\ifmmode\pm\else\textpm\fi{}0.08\ifmmode\pm\else\textpm\fi{}0.13\mathrm{}\mathrm{nb},$ ${\ensuremath{\sigma}}_{W}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{W}\ensuremath{\mu}\ensuremath{\nu})=2.09\ifmmode\pm\else\textpm\fi{}0.06\ifmmode\pm\else\textpm\fi{}0.22\ifmmode\pm\else\textpm\fi{}0.11\mathrm{}\mathrm{nb},$ ${\ensuremath{\sigma}}_{Z}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{Z}{e}^{+}{e}^{\ensuremath{-}})=0.218\ifmmode\pm\else\textpm\fi{}0.008\ifmmode\pm\else\textpm\fi{}0.008\ifmmode\pm\else\textpm\fi{}0.012\mathrm{}\mathrm{nb}$, and ${\ensuremath{\sigma}}_{Z}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{Z}{\ensuremath{\mu}}^{+}{\ensuremath{\mu}}^{\ensuremath{-}})=0.178\ifmmode\pm\else\textpm\fi{}0.022\ifmmode\pm\else\textpm\fi{}0.021\ifmmode\pm\else\textpm\fi{}0.009\mathrm{}\mathrm{nb}$, where the first uncertainty is statistical and the second systematic; the third reflects the uncertainty in the integrated luminosity. For the combined electron and muon analyses, we find ${\ensuremath{\sigma}}_{W}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{W}l\ensuremath{\nu})/{\ensuremath{\sigma}}_{Z}\mathrm{B}(\stackrel{\ensuremath{\rightarrow}}{Z}{l}^{+}{l}^{\ensuremath{-}})=10.90\ifmmode\pm\else\textpm\fi{}0.52$. Assuming standard model couplings, we use this result to determine the width of the W boson, and obtain $\ensuremath{\Gamma}(W)=2.044\ifmmode\pm\else\textpm\fi{}0.097 \mathrm{GeV}$.

Details

ISSN :
10894918 and 05562821
Volume :
60
Database :
OpenAIRE
Journal :
Physical Review D
Accession number :
edsair.doi...........fa15cd6590e600eab92ce8b574f78f8c
Full Text :
https://doi.org/10.1103/physrevd.60.052003