Search arXivSearch

arXiv · 1412.5502

Measurement of the $D^0 \to π^- e^+ ν_e$ differential decay branching fraction as a function of $q^2$ and study of form factor parameterizations

Abstract

Based on a sample of 500 million $e^+e^- \to c\bar c$ events recorded by the BaBar detector at c.m. energies of close to 10.6 GeV, we report on a study of the decay $D^0 \to π^- e^+ ν_e$. We measure the ratio of branching fractions $R_D = {\cal B}(D^0 \to π^- e^+ ν_e)/{\cal B}(D^0 \to K^- π^+) = 0.0713 \pm 0.0017_{stat.} \pm 0.0024_{syst.}$, and use the present world average for ${\cal B}(D^0 \to K^- π^+)$ to obtain ${\cal B}(D^0 \to π^- e^+ ν_e) = (2.770 \pm 0.068_{\rm stat.} \pm 0.092_{\rm syst.} \pm 0.037_{\rm ext.})\times 10^{-3}$ 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 $q^2$, the four-momentum transfer squared between the $D$ and the $π$ meson, is compared to various theoretical predictions for the hadronic form factor, $f_{+,D}^π(q^2)$, and the normalization $|V_{cd}| \times f_{+,D}^π(q^2=0)=0.1374\pm0.0038_{\rm stat.} \pm0.0022_{\rm syst.} \pm0.0009_{\rm ext.}$ is extracted from a fit to data. Using the most recent LQCD prediction of $f_{+,D}^π(q^2=0)=0.666 \pm 0.029$, we obtain $|V_{cd}|=0.206 \pm 0.007_{\rm exp.} \pm 0.009_{\rm LQCD}$. Assuming instead, $|V_{cd}|=|V_{us}|=0.2252 \pm 0.0009$, we obtain $f_{+,D}^π(q^2=0)=0.610 \pm 0.020_{\rm exp.} \pm 0.005_{\rm ext.}$. The $q^2$ dependence of $f_{+,D}^π(q^2)$ is compared to a variety of multi-pole parameterizations. This information is applied to $B^0 \to π^- e^+ ν_e$ decays and, combined with an earlier $B^0 \to π^- e^+ ν_e$ measurement by BaBar, is used to derive estimates of $|V_{ub}|$.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

J. P. Lees. 2014-12-17. Measurement of the $D^0 \to π^- e^+ ν_e$ differential decay branching fraction as a function of $q^2$ and study of form factor parameterizations. https://doi.org/10.1103/physrevd.91.052022

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related papers

Search for the decays $B_{(s)}^0\to J/ψγ$ at LHCb

A search for the rare decays $B_{(s)}^0\to J/ψγ$ is performed with proton-proton collision data collected by the LHCb experiment, corresponding to integrated luminosities of $3~\rm{fb}^{-1}$ at centre-of-mass energies of 7 and 8 TeV, and $6~\rm{fb}^{-1}$ at 13 TeV. Assuming no contribution from $B^0\to J/ψγ$ decay, an upper limit is set on the branching fraction $\mathcal{B}(B_{s}^0\to J/ψγ)<2.9\times10^{-6}$ at the 90% confidence level. If instead no contribution from $B_{s}^0\to J/ψγ$ decay is assumed, the limit is $\mathcal{B}(B^0\to J/ψγ)<2.5\times10^{-6}$ at the 90% confidence level. These results supersede the previous LHCb results, with the limit for $B_{s}^0\to J/ψγ$ improved by a factor of 2.5.

hep-ex

Atmospheric Neutrino Oscillations: the Full Picture

We present the first combined oscillation analysis of recent atmospheric neutrino datasets, featuring data from Super-Kamiokande, IceCube-DeepCore, and KM3NeT/ORCA together with reactor data from Daya Bay. Such combinations have long been considered infeasible outside experimental collaborations; we demonstrate that a unified physics model can simultaneously describe all datasets with no significant parameter tensions. Fitting 839\,048 events across 1536 ins with 91 parameters, our combined analysis yields competitive measurements of the neutrino mixing parameters, and prefers the Normal over the Inverted Mass Ordering at $3σ$ significance.

hep-ex

AgentRivet: an automated system for producing Rivet routines from journal publications

Particle physics collider experiments provide Rivet routines as part of the analysis preservation strategy for model-independent measurements. Rivet is a C++ toolkit that allow new theoretical models to be compared to the measurements, thus aiding the development and tuning of Monte Carlo event generators as well as searches for physics beyond the Standard Model. However, analysis coverage is known to be incomplete, with only 39% of measurements having documented and publicly available Rivet routines. In this article, we design and implement an automated workflow based on Large Language Models with the goal of providing the missing routines. This multi-step workflow, referred to as AgentRivet, extracts the physics analysis information from published papers and writes the missing Rivet routines, with intermediate code- and physics- reviews as part of an autonomous quality control. We report the results obtained using commercial Large Language Models, provided by OpenAI, Anthropic, and Google, for two recent measurements from the ATLAS and CMS experiments. We find that AgentRivet produces competent Rivet routines with few syntax errors. The physics fidelity of the routines is reasonable and follows the explanations given in the relevant publications. Nevertheless, physics-implementation issues do arise and are investigated using the artefacts produced by AgentRivet. The majority of physics implementation issues arise from subtle-but-ambiguous definitions in the given publication, although some models struggle to implement complex observables even when clear definitions are given.

hep-ex