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Dispersive analysis of the isospin breaking in the X(3872)~to~J/psi π^+π^- and X(3872)~to~J/psi π^+π⁰π^- decays

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arxiv 2409.13245 v2 pith:OFCSZWYI submitted 2024-09-20 hep-ph hep-ex

Dispersive analysis of the isospin breaking in the X(3872)~to~J/psi π^+π^- and X(3872)~to~J/psi π^+π⁰π^- decays

classification hep-ph hep-ex
keywords databreakingisospinlhcbmassaccessibleaccurateadditionally
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We analyze the latest LHCb data on the $\pi^+\pi^-$ spectrum in the isospin-violating $X(3872)\to J/\psi \pi^+\pi^-$ decay, based on dispersion theory to deal with the $\pi\pi$ final state interactions. Additionally, the isospin breaking effects are properly introduced, allowing for a reliable and accurate extraction of the ratio, $R_X$, between the $X(3872)$ couplings to the $J/\psi \rho$ and $J/\psi \omega$ channels from the data. We find very good agreement with the LHCb data for the whole range of the $\pi^+\pi^-$ invariant mass, and $R_X$ is determined to be {$0.26\pm 0.03$}. Using this value, we make predictions for the $\pi^+\pi^0\pi^-$ mass distribution in the $X(3872)\to J/\psi \pi^+\pi^0\pi^-$ process, which is currently accessible by the BESIII Collaboration, and update a prediction for the pole positions of the isovector partner states of the $X(3872)$, $W_{c1}$, with $I(J^{PC})=1(1^{++})$.

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Cited by 2 Pith papers

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  1. Dispersive analysis of the $J/\psi\to\pi^0 \gamma^\ast$ transition form factor with $\rho$-$\omega$ mixing effects

    hep-ph 2025-11 unverdicted novelty 7.0

    Dispersive analysis with ρ-ω mixing produces a two-parameter fit describing BESIII data on the J/ψ→π⁰γ* form factor from 0 to 2.8 GeV and extracts a (62 ± 21)° relative phase between strong and electromagnetic modes.

  2. A dispersive method to study CP asymmetries in hadronic multi-body $B$ decays

    hep-ph 2026-07 conditional novelty 5.0

    The large localized CP asymmetry in B±→K±π+π− arises from a dip in the CP-conserving rate, not enhanced CP violation, and the non-resonant isospin-2 S-wave is essential — per a 13-parameter dispersive fit to LHCb's an...