Measurement of the forward backward asymmetry of c and b quarks at the Z pole using reconstructed D mesons
DELPHI Collaboration: P. Abreu et al

TL;DR
This paper measures the forward-backward asymmetry of charm and bottom quarks at the Z resonance using reconstructed D mesons, providing insights into electroweak interactions and quark couplings.
Contribution
It introduces a method to determine heavy quark asymmetries at the Z pole using exclusive D meson reconstruction, improving precision over previous inclusive techniques.
Findings
Measured asymmetries for c and b quarks at multiple energies
Derived an effective electroweak mixing angle of 0.2332 ± 0.0016
Results are consistent with Standard Model predictions
Abstract
A measurement of the forward--backward asymmetry of and on the resonance is performed using about 3.5 million hadronic decays collected by the DELPHI detector at LEP in the years 1992 to 1995. The heavy quark is tagged by the exclusive reconstruction of several meson decay modes. The forward--backward asymmetries for and quarks at the resonance are determined to be: \[ \renewcommand{\arraystretch}{1.6} \begin{array}{rcr@{}l} \Afbc(\sqrt{s} = 91.235 {\rm GeV}) &=& &0.0659 \pm 0.0094 (stat) \pm 0.0035 (syst) \Afbb (\sqrt{s} = 91.235 {\rm GeV}) &=& &0.0762 \pm 0.0194 (stat) \pm 0.0085 (syst) \Afbc(\sqrt{s} = 89.434 {\rm GeV}) &=&-&0.0496 \pm 0.0368 (stat) \pm 0.0053 (syst) \Afbb(\sqrt{s} = 89.434 {\rm GeV}) &=& &0.0567 \pm 0.0756 (stat) \pm 0.0117 (syst) \Afbc(\sqrt{s} = 92.990 {\rm GeV}) &=& &0.1180 \pm 0.0318…
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