$D^*π$ interaction from the lineshape of $D_1(2420)$ in $B$-decays

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Hauptverfasser: Brandão, Pedro, Agatão, Breno, Abreu, Luciano M., Khemchandani, K. P., Torres, A. Martínez
Format: Preprint
Veröffentlicht: 2025
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author Brandão, Pedro
Agatão, Breno
Abreu, Luciano M.
Khemchandani, K. P.
Torres, A. Martínez
author_facet Brandão, Pedro
Agatão, Breno
Abreu, Luciano M.
Khemchandani, K. P.
Torres, A. Martínez
contents We present a model calculation to reproduce the differential mass distribution for the $D^*π$ system in the reactions $B^- \to D^{*+} π^- π^-$ and $B^{+}\to D_s^+D^{*-}π^{+}$ analyzed by the LHCb Collaboration, which shows a dominant signal for $D_1(2420)$. %\textbf{We} (The idea is to) We consider a model based on coupled channel meson-meson interactions that can describe the properties of $D_1(2420)$ in terms of the underlying dynamics, use it to determine the invariant mass distribution of the $D^*π$ system, and compare the results with the experimental data. We also determine the $D^*π$ scattering length, for which different values are available from different sources, leading to a controversy. To our knowledge, this is the first attempt to reproduce the mentioned data using model calculations. Our formalism relies on the hadronization of different mesons through a weak decay, allowing for the final-state (strong) interactions among the relevant constituents. We benefit from our previous work when obtaining the amplitudes corresponding to the strong interactions. We hope that our findings can be useful in further investigations of the properties of $D_1(2420)$.
format Preprint
id arxiv_https___arxiv_org_abs_2512_24370
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle $D^*π$ interaction from the lineshape of $D_1(2420)$ in $B$-decays
Brandão, Pedro
Agatão, Breno
Abreu, Luciano M.
Khemchandani, K. P.
Torres, A. Martínez
High Energy Physics - Phenomenology
Nuclear Theory
We present a model calculation to reproduce the differential mass distribution for the $D^*π$ system in the reactions $B^- \to D^{*+} π^- π^-$ and $B^{+}\to D_s^+D^{*-}π^{+}$ analyzed by the LHCb Collaboration, which shows a dominant signal for $D_1(2420)$. %\textbf{We} (The idea is to) We consider a model based on coupled channel meson-meson interactions that can describe the properties of $D_1(2420)$ in terms of the underlying dynamics, use it to determine the invariant mass distribution of the $D^*π$ system, and compare the results with the experimental data. We also determine the $D^*π$ scattering length, for which different values are available from different sources, leading to a controversy. To our knowledge, this is the first attempt to reproduce the mentioned data using model calculations. Our formalism relies on the hadronization of different mesons through a weak decay, allowing for the final-state (strong) interactions among the relevant constituents. We benefit from our previous work when obtaining the amplitudes corresponding to the strong interactions. We hope that our findings can be useful in further investigations of the properties of $D_1(2420)$.
title $D^*π$ interaction from the lineshape of $D_1(2420)$ in $B$-decays
topic High Energy Physics - Phenomenology
Nuclear Theory
url https://arxiv.org/abs/2512.24370