volume 90 issue 1 publication number 012001

Precision measurement of the mass of theτlepton

M. ABLIKIM
M. N. ACHASOV
X. C. Ai
O. Albayrak
M Albrecht
M. Albrecht
D. J. Ambrose
F. F. An
Q. An
J. Z. BAI
R. Baldini Ferroli
Y. BAN
J V Bennett
M. Bertani
J. M. Bian
E. Boger
O. Bondarenko
I. Boyko
S Braun
R. A. Briere
H. Cai
X Cai
O. Cakir
A. Calcaterra
G. F. Cao
S. A. Cetin
J. F. Chang
G. Chelkov
G. Chen
H. S. Chen
J. C. Chen
M L Chen
S J Chen
X. Chen
X. R. Chen
Y.-B. Chen
H.-P. Cheng
X. K. Chu
Y. P. CHU
D Cronin-Hennessy
H. L. Dai
J. P. Dai
D. Dedovich
Z. Y. DENG
A. DENIG
I. Denysenko
M. Destefanis
W. M. Ding
Y. Ding
C. Dong
J. Dong
L. Y. Dong
M. Y. Dong
S. X. DU
J. Z. Fan
J. Fang
S. S. Fang
Y. Fang
L. Fava
C. Q. Feng
C. D. FU
O. Fuks
Q. Gao
Y. Gao
C. Geng
K. Goetzen
W. X. Gong
W. Gradl
M. GRECO
M. H. Gu
Y. T. Gu
Y.H. Guan
A. Q. Guo
L. B. GUO
T. Guo
Y. P. Guo
Y. L. Han
F. A. HARRIS
K. L. HE
M. He
Z.Y. He
T. Held
Y. K. HENG
Z. L. Hou
C Hu
H. M. HU
J. F. Hu
T. Hu
G. M. Huang
G. S. HUANG
H.-P. Huang
J.‐S. Huang
L. Huang
X.-T. Huang
Y Huang
T. Hussain
C. S. Ji
Q. Ji
Q. P. Ji
X. B. Ji
X. L. Ji
L.L. Jiang
L W Jiang
X. S. Jiang
J. B. JIAO
Z Jiao
D. P. JIN
S. Jin
T. Johansson
N. KALANTAR-NAYESTANAKI
X. L. Kang
X. S. Kang
M. Kavatsyuk
B. Kloss
B. Kopf
M. Kornicer
W. Kuehn
A. Kupsc
W. Lai
J. S. LANGE
M. Lara
P. Larin
M. Leyhe
C. H. Li
Cheng Li
Cui Li
D. Li
D. M. Li
F. Li
G. Li
H. B. Li
J.-C. Li
K Li
Lei Li
P. R. Li
Q. J. LI
T Li
T. Li
W. D. LI
W. G. LI
X. L. Li
X. N. LI
X. Q. Li
Z. B. LI
H. Liang
Y. F. Liang
Y T Liang
D. X. Lin
B. J. LIU
C. L. Liu
C. X. LIU
F. H. Liu
Fang Liu
Fang Liu
Feng Liu
H. B. LIU
H. H. Liu
H. M. LIU
J Liu
J Liu
J.-P. LIU
K. Liu
K. Y. Liu
P. L. Liu
Q. Liu
S. B. Liu
X. Liu
Y. B. Liu
Z. A. LIU
Zhiqiang Liu
Zhiqing Liu
H. Loehner
X. C. Lou
G. R. LU
H. J. Lu
H L Lu
J. G. Lu
X R Lü
X. R. Lu
Y Lü
Y. Lu
Y.-p. Lu
C. L. LUO
M. X. Luo
T. Luo
X.‐L. Luo
M. Lv
F. C. MA
H. L. MA
Q. M. MA
S. Ma
T. Ma
X. Y. Ma
F. E. Maas
M. Maggiora
Q. A. Malik
Y. J. Mao
Z. P. Mao
J. G. MESSCHENDORP
J. Min
T. J. Min
R E Mitchell
X. H. Mo
Y. J. Mo
H. MOEINI
C. Morales Morales
K. Moriya
N. Yu. MUCHNOI
H. Muramatsu
Y. Nefedov
I. B. NIKOLAEV
Z. Ning
S. Nisar
X. Y. Niu
S. L. Olsen
Q. Ouyang
S. Pacetti
M. Pelizaeus
H. P. Peng
K. Peters
J. L. PING
R. G. PING
R. Poling
N. Q.
M. Qi
S. Qian
C F. Qiao
L-Q Qin
L. Q. Qin
X. S. Qin
Y. Qin
Z. H. Qin
J. F. QIU
K. H. Rashid
C. F. Redmer
M. Ripka
G. RONG
X. D. RUAN
A. SARANTSEV
K. Schoenning
S. SCHUMANN
W. Shan
M. Shao
C. P. Shen
X. Y. SHEN
H. Y. SHENG
M. R. Shepherd
W. M. Song
X. Y. Song
S. Spataro
B. SPRUCK
G. X. Sun
J. F. SUN
S‐S. Sun
Y. J. Sun
Y. Z. SUN
Z. J. Sun
Z. T. Sun
C. J. Tang
X. Tang
I. Tapan
E.H. Thorndike
D. TOTH
M. Ullrich
I. Uman
G. S. Varner
B. Wang
D. Wang
D. Y. Wang
K. Wang
L. L. WANG
L. S. Wang
M Wang
P. Wang
P. L. WANG
Q. J. Wang
S. G. WANG
W. Wang
X. F. Wang
Y. D. Wang
Y. F. Wang
Y. Q. Wang
Z Wang
Z. Wang
Z G Wang
Z.-H. Wang
Z. Y. Wang
D. H. Wei
J.-B. Wei
P. Weidenkaff
S. P. Wen
M Werner
U. WIEDNER
M. WOLKE
L.H. Wu
N. Wu
Z. Wu
L. G. Xia
Y. Xia
D. XIAO
Z. J. Xiao
Y. G. Xie
Q. L. Xiu
G. F. XU
L. Xu
Q. J. XU
Q. N. Xu
X. P. XU
Z. Xue
L. Yan
W. B. YAN
W. C. Yan
Y. H. Yan
H. X. YANG
L. Yang
Y. Yang
Y. X. Yang
H Ye
M. Ye
M. H. YE
B.X. YU
C. X. YU
H. W. Yu
J. S. Yu
S.P. Yu
C. Z. Yuan
W.-L. Yuan
Y. Yuan
A. A. Zafar
A. Zallo
S. L. ZANG
Y. Zeng
B. X. ZHANG
B. Y. ZHANG
C Zhang
C. B. Zhang
C. C. Zhang
D. H. ZHANG
H. H. ZHANG
H. Y. Zhang
J. J. Zhang
J. Q. Zhang
J. W. Zhang
J Y Zhang
J. Z. Zhang
S H Zhang
X J. Zhang
X. Y. Zhang
Y Zhang
Y. Zhang
Y. H. Zhang
Z. H. Zhang
Z. P. Zhang
Z. Y. Zhang
G. Zhao
J. W. ZHAO
Lei Zhao
Ling Zhao
M. G. ZHAO
Q. Zhao
Q.W. Zhao
S.J. Zhao
T. C. Zhao
X. H. Zhao
Y. B. Zhao
Z. G. ZHAO
B. Zheng
J. P. Zheng
Y. H. Zheng
B. ZHONG
L. Zhou
Li Zhou
X. Zhou
X. K. Zhou
X.-R. ZHOU
X. Y. Zhou
K. Zhu
K. J. Zhu
X L Zhu
Y. C. Zhu
Y. S. Zhu
Z. A. ZHU
J. Zhuang
B. S. ZOU
J. H. Zou
Publication typeJournal Article
Publication date2014-07-07
scimago Q1
wos Q1
SJR1.458
CiteScore9.0
Impact factor5.3
ISSN24700010, 24700029, 05562821, 10894918, 15507998, 15502368
Nuclear and High Energy Physics
Abstract
An energy scan near the tau pair production threshold has been performed using the BESIII detector. About 24 pb(-1) of data, distributed over four scan points, were collected. This analysis is based on t pair decays to ee, e mu, eh, h, hh, e.,. and p. final states, where h denotes a charged p or K. The mass of the t lepton is measured from a maximum likelihood fit to the t pair production cross- section data to be m(tau) = 1776.91 +/- 0.12_0.10 - 0.13 _ MeV/c(2), which is currently the most precise value in a single measurement.
Found 
Found 

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ABLIKIM M. et al. Precision measurement of the mass of theτlepton // Physical Review D. 2014. Vol. 90. No. 1. 012001
GOST all authors (up to 50) Copy
ABLIKIM M. et al. Precision measurement of the mass of theτlepton // Physical Review D. 2014. Vol. 90. No. 1. 012001
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@article{2014_ABLIKIM,
author = {M. ABLIKIM and M. N. ACHASOV and X. C. Ai and O. Albayrak and M Albrecht and M. Albrecht and D. J. Ambrose and F. F. An and Q. An and J. Z. BAI and R. Baldini Ferroli and Y. BAN and J V Bennett and M. Bertani and J. M. Bian and E. Boger and O. Bondarenko and I. Boyko and S Braun and R. A. Briere and H. Cai and X Cai and O. Cakir and A. Calcaterra and G. F. Cao and S. A. Cetin and J. F. Chang and G. Chelkov and G. Chen and H. S. Chen and J. C. Chen and M L Chen and S J Chen and X. Chen and X. R. Chen and Y.-B. Chen and H.-P. Cheng and X. K. Chu and Y. P. CHU and D Cronin-Hennessy and H. L. Dai and J. P. Dai and D. Dedovich and Z. Y. DENG and A. DENIG and I. Denysenko and M. Destefanis and W. M. Ding and Y. Ding and C. Dong and others},
title = {Precision measurement of the mass of theτlepton},
journal = {Physical Review D},
year = {2014},
volume = {90},
publisher = {American Physical Society (APS)},
month = {jul},
url = {https://doi.org/10.1103/PhysRevD.90.012001},
number = {1},
pages = {012001},
doi = {10.1103/PhysRevD.90.012001}
}