Study of the strong coupling constant using W+Jet processes
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Abachi, S
l
Abbott, B
ah
Abolins, M
w
Acharya, B S
ap
Adam, I
j
Adams, D L
ai
Adams, M
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Ahn, S
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Aihara, H
t
Alitti, J
al
Lvarez, G
p
Alves, G A
h
Amidi, E
aa
Amos, N
v
Anderson, E W
q
Aronson, S H
c
Astur, R
an
Avery, R E
ac
Baden, A
u
Balamurali, V
ad
Balderston, J
n
Baldin, B
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Bantly, J
d
Bartlett, J F
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Bazizi, K
ak
Bendich, J
t
Beri, S B
af
Bertram, I
ai
Bezzubov, V A
ag
Bhat, P C
l
Bhatnagar, V
af
Bhattacharjee, M
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Bischoff, A
g
Biswas, N
ad
Blazey, G
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Blessing, S
m
Bloom, P
e
Boehnlein, A
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Bojko, N I
ag
Borcherding, F
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Borders, J
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Boswell, C
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Brandt, A
l
Brock, R
w
Bross, A
l
Buchholz, D
ac
Burtovoi, V S
ag
Butler, J M
l
Carvalho, W
h
Casey, D
ak
Castilla Valdez, H
i
Chakraborty, D
an
Chang, S M
aa
Chekulaev, S V
ag
Chen, L P
t
Chen, W
an
Chevalier, L
al
Chopra, S
af
Choudhary, B C
g
Christenson, J H
l
Chung, M
o
Claes, D
an
Clark, A R
t
Cobau, W G
u
Cochran, J
g
Cooper, W E
l
Cretsinger, C
ak
Cullen Vidal, D
d
Cummings, M A C
n
Cutts, D
d
Dahl, O I
t
De, K
aq
Demarteau, M
l
Demina, R
aa
Denisenko, K
l
Denisenko, N
l
Denisov, D
l
Denisov, S P
ag
Dharmaratna, W
m
Diehl, H T
l
Diesburg, M
l
Di Loreto, G
w
Dixon, R
l
Draper, P
aq
Drinkard, J
f
Ducros, Y
al
Dugad, S R
ap
Durston Johnson, S
ak
Edmunds, D
w
Ellison, J
g
Elvira, V D
l
Engelmann, R
an
Eno, S
u
Eppley, G
ai
Ermolov, P
x
Eroshin, O V
ag
Evdokimov, V N
ag
Fahey, S
w
Fahland, T
d
Fatyga, M
c
Fatyga, M K
ak
Featherly, J
c
Feher, S
an
Fein, D
b
Ferbel, T
ak
Finocchiaro, G
an
Fisk, H E
l
Fisyak, Y
e
Flattum, E
w
Forden, G E
b
Fortner, M
ab
Frame, K C
w
Franzini, P
j
Fuess, S
l
Gallas, E
aq
Galyaev, A N
ag
Gao, S G
l
Geld, T L
w
Genik Ii, R J
w
Genser, K
l
Gerber, C E
l
Gibbard, B
c
Glebov, V
ak
Glenn, S
e
Gobbi, B
ac
Goforth, M
m
Goldschmidt, A
t
Gomez B
a
Goncharov, P I
ag
Gonzalez Solis J L
i
Gordon, H
c
Goss, L T
ar
Graf, N
c
Grannis, P D
an
Green, D R
l
Green, J
ab
Greenlee, H
l
Griffin, G
f
Grossman, N
l
Grudberg, P
t
Grunendahl S
ak
Gu, W X
l
Guglielmo, G
ae
Guida, J A
an
Guida, J M
c
Guryn, W
c
Gurzhiev, S N
ag
Gutierrez, P
ae
Gutnikov, Y E
ag
Hadley, N J
u
Haggerty, H
l
Hagopian, S
m
Hagopian, V
m
Hahn, K S
ak
Hall, R E
f
Hansen, S
l
Hatcher, R
w
Hauptman, J M
q
Hedin, D
ab
Heinson, A P
g
Heintz, U
l
Hernandez Montoya R
l
Heuring, T
m
Hirosky, R
m
Hobbs, J D
l
Hoeneisen, B
a
Hoftun, J S
d
Hsieh, F
v
Hu, Tao
l
Hu, Ting
an
Hu, Tong
p
Huehn, T
g
Igarashi, S
l
Ito, A S
l
James, E
b
Jaques, J
ad
Jerger, S A
w
Jiang, J Z Y
an
Joffe Minor, T
ac
Johari, H
aa
Johns, K
b
Johnson, M
l
Johnstad, H
ao
Jonckheere, A
l
Jones, M
n
Jostlein H
l
Jun, S Y
ac
Jung, C K
an
Kahn, S
c
Kalbfleisch, G
ae
Kang, J S
r
Kehoe, R
ad
Kelly, M L
ad
Kernan, A
g
Kerth, L
t
Kim, C L
r
Kim, S K
am
Klatchko, A
m
Klima, B
l
Klochkov, B I
ag
Klopfenstein, C
e
Klyukhin, V I
ag
Kochetkov, V I
ag
Kohli, J M
af
Koltick, D
ah
Kostritskiy, A V
ag
Kotcher, J
c
Kourlas, J
z
Kozelov, A V
ag
Kozlovski, E A
ag
Krishnaswamy, M R
ap
Krzywdzinski, S
l
Kunori, S
u
Lami, S
an
Landsberg, G
l
Lebrat, J F
al
Leflat, A
x
Li, H
an
Li, J
aq
Li, Y K
ac
Li Demarteau, Q Z
l
Lima, J G R
aj
Lincoln, D
v
Linn, S L
m
Linnemann, J
w
Lipton, R
l
Liu, Y C
ac
Lobkowicz, F
ak
Loken, S C
t
Lokos S
an
Lueking, L
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Lyon, A L
u
MacIel, A K A
h
Madaras, R J
t
Madden, R
m
Mandrichenko, I V
ag
Mangeot, Ph
al
Mani, S
e
Mansoulie B
al
Mao, H S
l
Margulies, S
o
Markeloff, R
ab
Markosky, L
b
Marshall, T
p
Martin, M I
l
Marx, M
an
May, B
ac
Mayorov, A A
ag
McCarthy, R
an
McKibben, T
o
McKinley, J
w
McMahon, T
ae
Melanson, H L
l
De Mello Neto, J R T
aj
Merritt, K W
l
Miettinen, H
ai
Milder, A
b
Mincer, A
z
De Miranda, J M
h
Mishra, C S
l
Mohammadi Baarmand, M
an
Mokhov, N
l
Mondal, N K
ap
Montgomery, H E
l
Mooney, P
a
Mudan, M
y
Murphy, C
p
Murphy, C T
l
Nang, F
d
Narain, M
l
Narasimham, V S
al
Narayanan, A
b
Neal, H A
v
Negret, J P
a
Neis, E
v
Nemethy, P
z
Neic D
d
Nicola, M
h
Norman, D
ar
Oesch, L
v
Oguri, V
aj
Oltman, E
t
Oshima, N
l
Owen, D
w
Padley, P
ai
Pang, M
q
Para, A
l
Park, C H
l
Park, Y M
s
Partridge, R
d
Parua, N
ap
Paterno, M
ak
Perkins, J
aq
Peryshkin, A
l
Peters, M
n
Piekarz, H
m
Pischalnikov, Y
ah
Pluquet, A
al
Podstavkov, V M
ag
Pope, B G
w
Prosper, H B
m
Protopopescu, S
c
Pueljic D
t
Qian, J
v
Quintas, P Z
l
Raja, R
l
Rajagopalan, S
an
Ramirez, O
o
Rao, M V S
ap
Rapidis, P A
l
Rasmussen, L
an
Read, A L
l
Reucroft, S
aa
Rijssenbeek, M
an
Rockwell, T
w
Roe, N A
t
Rubinov, P
an
Ruchti, R
ad
Rusin, S
x
Rutherfoord, J
b
Santoro, A
h
Sawyer, L
aq
Schamberger, R D
an
Schellman, H
ac
Sculli, J
z
Shabalina, E
x
Shaffer, C
m
Shankar, H C
ap
Shao, Y Y
l
Shivpuri, R K
k
Shupe, M
b
Singh, J B
af
Sirotenko, V
ab
Smart, W
l
Smith, A
b
Smith, R P
l
Snihur, R
ac
Snow, G R
y
Snyder, S
an
Solomon, J
o
Sood, P M
af
Sosebee, M
aq
Souza, M
h
Spadafora, A L
t
Stephens, R W
aq
Stevenson, M L
t
Stewart, D
v
Stoianova, D A
ag
Stoker, D
f
Streets, K
z
Strovink, M
t
Sznajder, A
h
Taketani, A
l
Tamburello, P
u
Tarazi, J
f
Tartaglia, M
l
Taylor, T L
ac
Teiger, J
al
Thompson, J
u
Trippe, T G
t
Tuts, P M
j
Varelas, N
w
Varnes, E W
t
Virador, P R G
t
Vititoe, D
b
Volkov, A A
ag
Vorobiev, A P
ag
Wahl, H D
m
Wang, G
m
Wang, J
l
Warchol, J
ad
Wayne, M
ad
Weerts, H
w
Wen, F
m
Wenzel, W A
t
White, A
aq
White, J T
ar
Wightman, J A
q
Wilcox, J
aa
Willis, S
ab
Wimpenny, S J
g
Wirjawan, J V D
ar
Womersley, J
l
Won, E
ak
Wood, D R
l
Xu, H
d
Yamada, R
l
Yamin, P
c
Yanagisawa, C
an
Yang, J
z
Yasuda, T
aa
Yoshikawa, C
n
Youssef, S
m
Yu, J
ak
Yu, Y
am
Zhang, D H
l
Zhang, Y
l
Zhu, Q
z
Zhu, Z H
ak
Zieminska, D
p
Zieminski, A
p
Zylberstejn, A
al
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84927477805
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Ph.D. thesis, SUNY at Stony Brook, 1993 (unpublished). This can be found on the World Wide Web (WWW) under URL: http://d0sgi0.fnal.gov/publications_talks/thesis/.
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Yu1
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84927471563
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Pseudorapidity is defined as η=-ln[tanθ/2], where θ is the polar angle relative to the proton beam.
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84927477903
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Nucl. Instrum. Methods Phys. Res., Sect. A
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(1983)
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, pp. 45
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Engelman, R.1
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84927472523
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Ph.D. thesis, University of Arizona, 1993 (unpublished). This can be found on the World Wide Web (WWW) under URL: http://d0sgi0.fnal.gov/publications_talks/thesis/.
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Milder, A.1
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84927509058
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Report No. DESY 95-068, (to be published).
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Vogt, A.1
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84927472163
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(1993)
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84927459777
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NLO jets have more fractional energy in a cone of 0.7 than data jets [c18]. Therefore, a mismatch in energy between theory and data jets increases the discrepancy in R by an estimated amount of 0.005/GeV.
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