Tevatron Run II combination of the effective leptonic electroweak mixing angle
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Aaltonen, T.Abazov, V. M.
Abbott, B.
Acharya, B. S.
Adams, M.
Adams, T.
Agnew, J. P.
Alexeev, G. D.
Alkhazov, G.
Alton, A.
Amerio, S.
Amidei, D.
Anastassov, A.
Annovi, A.
Antos, J.
Apollinari, G.
Appel, J. A.
Arisawa, T.
Artikov, A.
Asaadi, J.
Ashmanskas, W.
Askew, A.
Atkins, S.
Auerbach, B.
Augsten, K.
Aurisano, A.
Aushev, V.
Aushev, Y.
Avila, C.
Azfar, F.
Badaud, F.
Badgett, W.
Bae, T.
Bagby, L.
Baldin, B.
Bandurin, D. V.
Banerjee, S.
Barbaro-Galtieri, A.
Barberis, E.
Baringer, P.
Barnes, V. E.
Barnett, B. A.
Barria, P.
Bartlett, J. F.
Bartos, P.
Bassler, U.
Bauce, M.
Bazterra, V.
Bean, A.
Bedeschi, F.
Begalli, M.
Behari, S.
Bellantoni, L.
Bellettini, G.
Bellinger, J.
Benjamin, D.
Beretvas, A.
Beri, S. B.
Bernardi, G.
Bernhard, R.
Bertram, I.
Besançon, M.
Beuselinck, R.
Bhat, P. C.
Bhatia, S.
Bhatnagar, V.
Bhatti, A.
Bland, K. R.
Blazey, G.
Blessing, S.
Bloom, K.
Blumenfeld, B.
Bocci, A.
Bodek, A.
Boehnlein, A.
Boline, D.
Boos, E. E.
Borissov, G.
Bortoletto, D.
Borysova, M.
Boudreau, J.
Boveia, A.
Brandt, A.
Brandt, O.
Brigliadori, L.
Brochmann, M.
Brock, R.
Bromberg, C.
Bross, A.
Brown, D.
Brucken, E.
Bu, X. B.
Budagov, J.
Budd, H. S.
Buehler, M.
Buescher, V.
Bunichev, V.
Burdin, S.
Burkett, K.
Busetto, G.
Affiliation
Univ ArizonaIssue Date
2018-06-28
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AMER PHYSICAL SOCCitation
D0 Collaboration, & CDF Collaboration (2018). Tevatron Run II combination of the effective leptonic electroweak mixing angle. Physical Review D, 97, [112007]. DOI: 10.1103/PhysRevD.97.112007Journal
PHYSICAL REVIEW DRights
Copyright © The Author(s). Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license.Collection Information
This item from the UA Faculty Publications collection is made available by the University of Arizona with support from the University of Arizona Libraries. If you have questions, please contact us at repository@u.library.arizona.edu.Abstract
Drell-Yan lepton pairs produced in the process p (p) over bar -> l(+)l(-) + X through an intermediate gamma*/Z boson have an asymmetry in their angular distribution related to the spontaneous symmetry breaking of the electroweak force and the associated mixing of its neutral gauge bosons. The CDF and D0 experiments have measured the effective-leptonic electroweak mixing parameter sin(2) theta(lept)(eff) using electron and muon pairs selected from the full Tevatron proton-antiproton data sets collected in 2001-2011, corresponding to 9-10 fb(-1) of integrated luminosity. The combination of these measurements yields the most precise result from hadron colliders, sin(2)theta(lept)(eff) = 0.23148 +/- 0.00033. This result is consistent with, and approaches in precision, the best measurements from electron-positron colliders. The standard model inference of the on-shell electroweak mixing parameter sin(2) theta(W), or equivalently the W-boson mass M-W, using the ZFITTER software package yields sin(2) theta(W) = 0.22324 +/- 0.00033 or equivalently, M-W = 80.367 +/- 0.017 GeV/c(2).ISSN
2470-00102470-0029
Version
Final published versionAdditional Links
https://link.aps.org/doi/10.1103/PhysRevD.97.112007ae974a485f413a2113503eed53cd6c53
10.1103/PhysRevD.97.112007
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Except where otherwise noted, this item's license is described as Copyright © The Author(s). Published by the American Physical Society under the terms of the Creative Commons Attribution 4.0 International license.

