Observation of $D^+ \to f_0(500) e^+ν_e$ and Improved Measurements of $D \toρe^+ν_e$
Abstract: Using a data sample corresponding to an integrated luminosity of 2.93~fb${-1}$ recorded by the BESIII detector at a center-of-mass energy of $3.773$ GeV, we present an analysis of the decays $\bar{D}0\to\pi+\pi0 e-\bar{\nu}_e$ and $D+\to\pi-\pi+ e+\nu_e$. By performing a partial wave analysis, the $\pi+\pi-$ $S$-wave contribution to $D+\to\pi-\pi+ e+\nu_e$ is observed to be $(25.7\pm1.6\pm1.1)$% with a statistical significance greater than 10$\sigma$, besides the dominant $P$-wave contribution. This is the first observation of the $S$-wave contribution. We measure the branching fractions $\mathcal{B}(D{0} \to \rho- e+ \nu_e) = (1.445\pm 0.058 \pm 0.039) \times10{-3}$, $\mathcal{B}(D{+} \to \rho0 e+ \nu_e) = (1.860\pm 0.070 \pm 0.061) \times10{-3}$, and $\mathcal{B}(D{+} \to f_0(500) e+ \nu_e, f_0(500)\to\pi+\pi-) = (6.30\pm 0.43 \pm 0.32) \times10{-4}$. An upper limit of $\mathcal{B}(D{+} \to f_0(980) e+ \nu_e, f_0(980)\to\pi+\pi-) < 2.8 \times10{-5}$ is set at the 90% confidence level. We also obtain the hadronic form factor ratios of $D\to \rho e+\nu_e$ at $q{2}=0$ assuming the single-pole dominance parameterization: $r_{V}=\frac{V(0)}{A_{1}(0)}=1.695\pm0.083\pm0.051$, $r_{2}=\frac{A_{2}(0)}{A_{1}(0)}=0.845\pm0.056\pm0.039$.
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