Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions
Abstract The bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB is a key observable in electron–positron collisions at the $$Z^{0}$$ Z0 peak. In this paper, we employ the Principle of Maximum Conformality (PMC) to fix the $$\alpha _s$$ αs -running behavior of the next-to-next-to-leading...
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doaj-c3a9de0b56974f97a8f965ae430600dd2020-11-25T02:48:04ZengSpringerOpenEuropean Physical Journal C: Particles and Fields1434-60441434-60522020-07-018071810.1140/epjc/s10052-020-8234-xRevisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisionsSheng-Quan Wang0Rui-Qing Meng1Xing-Gang Wu2Long Chen3Jian-Ming Shen4Department of Physics, Guizhou Minzu UniversityDepartment of Physics, Guizhou Minzu UniversityDepartment of Physics, Chongqing UniversityMax Planck Institute for PhysicsSchool of Physics and Electronics, Hunan UniversityAbstract The bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB is a key observable in electron–positron collisions at the $$Z^{0}$$ Z0 peak. In this paper, we employ the Principle of Maximum Conformality (PMC) to fix the $$\alpha _s$$ αs -running behavior of the next-to-next-to-leading order QCD corrections to $$A_\mathrm{{FB}}$$ AFB . The resulting PMC scale for this $$A_\mathrm{{FB}}$$ AFB is an order of magnitude smaller than the conventional choice $$\mu _r=M_Z$$ μr=MZ . This scale has the physically reasonable behavior and reflects the virtuality of its QCD dynamics, which is independent to the choice of renormalization scale. Our analyses show that the effective momentum flow for the bottom quark forward–backward asymmetry should be $$\mu _r\ll M_Z$$ μr≪MZ other than the conventionally suggested $$\mu _r=M_Z$$ μr=MZ . Moreover, the convergence of perturbative QCD series for $$A_\mathrm{{FB}}$$ AFB is greatly improved using the PMC. Our prediction for the bare bottom quark forward–backward asymmetry is refined to be $$A^{0,b}_\mathrm{FB}=0.1004\pm 0.0016$$ AFB0,b=0.1004±0.0016 , which diminishes the well known tension between the experimental determination for this (pseudo) observable and the respective Standard Model fit to $$2.1\sigma $$ 2.1σ .http://link.springer.com/article/10.1140/epjc/s10052-020-8234-x |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Sheng-Quan Wang Rui-Qing Meng Xing-Gang Wu Long Chen Jian-Ming Shen |
spellingShingle |
Sheng-Quan Wang Rui-Qing Meng Xing-Gang Wu Long Chen Jian-Ming Shen Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions European Physical Journal C: Particles and Fields |
author_facet |
Sheng-Quan Wang Rui-Qing Meng Xing-Gang Wu Long Chen Jian-Ming Shen |
author_sort |
Sheng-Quan Wang |
title |
Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions |
title_short |
Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions |
title_full |
Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions |
title_fullStr |
Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions |
title_full_unstemmed |
Revisiting the bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB in electron–positron collisions |
title_sort |
revisiting the bottom quark forward–backward asymmetry $$a_\mathrm{{fb}}$$ afb in electron–positron collisions |
publisher |
SpringerOpen |
series |
European Physical Journal C: Particles and Fields |
issn |
1434-6044 1434-6052 |
publishDate |
2020-07-01 |
description |
Abstract The bottom quark forward–backward asymmetry $$A_\mathrm{{FB}}$$ AFB is a key observable in electron–positron collisions at the $$Z^{0}$$ Z0 peak. In this paper, we employ the Principle of Maximum Conformality (PMC) to fix the $$\alpha _s$$ αs -running behavior of the next-to-next-to-leading order QCD corrections to $$A_\mathrm{{FB}}$$ AFB . The resulting PMC scale for this $$A_\mathrm{{FB}}$$ AFB is an order of magnitude smaller than the conventional choice $$\mu _r=M_Z$$ μr=MZ . This scale has the physically reasonable behavior and reflects the virtuality of its QCD dynamics, which is independent to the choice of renormalization scale. Our analyses show that the effective momentum flow for the bottom quark forward–backward asymmetry should be $$\mu _r\ll M_Z$$ μr≪MZ other than the conventionally suggested $$\mu _r=M_Z$$ μr=MZ . Moreover, the convergence of perturbative QCD series for $$A_\mathrm{{FB}}$$ AFB is greatly improved using the PMC. Our prediction for the bare bottom quark forward–backward asymmetry is refined to be $$A^{0,b}_\mathrm{FB}=0.1004\pm 0.0016$$ AFB0,b=0.1004±0.0016 , which diminishes the well known tension between the experimental determination for this (pseudo) observable and the respective Standard Model fit to $$2.1\sigma $$ 2.1σ . |
url |
http://link.springer.com/article/10.1140/epjc/s10052-020-8234-x |
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