Measurement of the $D^0 \to \pi^- e^+ \nu_e$ differential decay branching fraction as a function of $q^2$ and study of form factor parameterizations
J.P. Lees (for the BABAR Collaboration)

TL;DR
This paper measures the differential decay rate of D0 to pi e nu and compares it with theoretical models, extracting form factors and CKM matrix elements using a large data sample from BaBar.
Contribution
It provides the first detailed measurement of the q^2-dependent differential branching fraction for D0 to pi e nu and tests various form factor parameterizations.
Findings
Measured the ratio of branching fractions R_D = 0.0713 ± 0.0017(stat) ± 0.0024(syst)
Extracted the normalization |V_cd| × f_+^{π}(0) = 0.1374 ± 0.0038(stat) ± 0.0022(syst)
Compared q^2 dependence of form factors to multiple models and derived estimates of |V_ub|
Abstract
Based on a sample of 500 million events recorded by the BaBar detector at c.m. energies of close to 10.6 GeV, we report on a study of the decay . We measure the ratio of branching fractions , and use the present world average for to obtain where the third error accounts for the uncertainty on the branching fraction for the reference channel. The measured dependence of the differential branching fraction on , the four-momentum transfer squared between the and the meson, is compared to various theoretical predictions for the hadronic form factor,…
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