Analysis of Bc ττ at CEPC

Abstract

The precise determination of the Bc ττ branching ratio provides an advantageous opportunity for understanding the electroweak structure of the Standard Model, measuring the CKM matrix element |Vcb| and probing new physics models. In this paper, we discuss the potential of measuring the processes of Bc ττ with τ decaying leptonically at the proposed Circular Electron Positron Collider (CEPC). We conclude that during the Z pole operation, the channel signal can achieve five σ significance with 109 Z decays, and the signal strength accuracies for Bc ττ can reach around 1% level at the nominal CEPC Z pole statistics of one trillion Z decays assuming the total Bc τ τ yield is 3.6 × 106. Our theoretical analysis indicates the accuracy could provide a strong constraint on the general effective Hamiltonian for the b cτ transition. If the total Bc yield can be determined to O(1\%) level of accuracy in the future, these results also imply |Vcb| could be measured up to O(1\%) level of accuracy.

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