We have studied the decay Bˉ→Dℓνˉ, where ℓ=eorμ. From a fit to the differential decay rate dΓ/dw we measure the rate normalization FD(1)∣Vcb∣ and form factor slope ρ^D2, and, using measured values of τB, find Γ(Bˉ→Dℓνˉ)=(12.0±0.9±2.1)ns−1. The resulting branching fractions are B(Bˉ0→D+ℓ−νˉ)=(1.87±0.15±0.32) and B(B−→D0ℓ−νˉ)=(1.94±0.15±0.34). The form factor parameters are in agreement with those measured in Bˉ→D∗ℓνˉ decays, as predicted by heavy quark effective theory.
@article{arxiv.hep-ex/9705019,
title = {Measurement of the $\bar{B}\to D\ell\bar{\nu}$ Partila Width and Form Factor Parameters},
author = {CLEO Collaboration and M. Athans et al},
journal= {arXiv preprint arXiv:hep-ex/9705019},
year = {2010}
}
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11 pages, postscript file also available through http://w4.lns.cornell.edu/public/CLNS