Abstract
AbstractWe present a study of top quark mass measurements at the $$t\bar{t}$$
t
t
¯
threshold based on CEPC. A centre-of-mass energy scan near two times of the top quark mass is performed and the measurement precision of top quark mass, width and $$\alpha _S$$
α
S
are evaluated using the $$t\bar{t}$$
t
t
¯
production rates. Realistic scan strategies at the threshold are discussed to maximise the sensitivity to the measurements individually and simultaneously in the CEPC scenarios assuming a total luminosity limited to 100 fb$$^{-1}$$
-
1
. With the optimal scan for individual property measurements, the top quark mass precision is expected to be 9 MeV, the top quark width precision is expected to be 26 MeV, and $$\alpha _S$$
α
S
can be measured at a precision of 0.00039, considering only the statistical uncertainty. Taking into account the systematic uncertainties from theory, width, $$\alpha _S$$
α
S
, experimental efficiency, background subtraction, beam energy and luminosity spectrum, the top quark mass can be measured at a precision of 25 MeV optimistically and 59 MeV conservatively at CEPC.
Funder
Peking University under startup Grant
National Natural Science Foundation of China
Institute of High Energy Physics, Chinese Academy of Sciences under the innovative project on sciences and technologies
Publisher
Springer Science and Business Media LLC
Subject
Physics and Astronomy (miscellaneous),Engineering (miscellaneous)
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