arXiv · hep-ph/9409453
Higher-Order Perturbative Corrections to $b\to c$ Transitions at Zero Recoil
Abstract
We estimate the two-loop perturbative corrections to zero-recoil matrix elements of the flavour-changing currents $\bar c\,γ^μb$ and $\bar c\,γ^μγ_5\,b$ by calculating the terms of order $n_f\,α_s^2$ and substituting the dependence on the number of flavours by the first coefficient of the $β$-function. Both for vector and axial vector currents, we find moderate two-loop corrections below 1\% in magnitude. Using the Brodsky--Lepage--Mackenzie prescription to set the scale in the order-$α_s$ corrections in the $\overline{\rm MS}$ scheme, we obtain $μ_V\simeq 0.92\sqrt{m_b m_c}$ and $μ_A\simeq 0.51\sqrt{m_b m_c}$ in the two cases. These scales are sufficiently large for perturbation theory to be well-behaved. The implications of our results to the extraction of $|\,V_{cb}|$ are briefly discussed.
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Matthias Neubert. 1994-09-30. Higher-Order Perturbative Corrections to $b\to c$ Transitions at Zero Recoil. https://doi.org/10.1016/0370-2693(94)01326-8
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