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Analysis of the psi(3770) resonance in line with unitarity and analyticity constraints

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arxiv 2312.00619 v2 pith:X56RZ445 submitted 2023-12-01 hep-ph hep-ex

Analysis of the psi(3770) resonance in line with unitarity and analyticity constraints

classification hep-ph hep-ex
keywords analysisanalyticityderivefindlinepoleresonanceunitarity
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study the inclusive and exclusive cross sections of $e^+e^-\to \text{hadrons}$ for center-of-mass energies between 3.70 GeV and 3.83 GeV to infer the mass, width, and couplings of the $\psi(3770)$ resonance. By using a coupled-channel K-matrix approach, we setup our analysis to respect unitarity and the analyticity properties of the underlying scattering amplitudes. We fit several models to the full dataset and identify our nominal results through a statistical model comparison. We find that, accounting for the interplay between the $\psi(2S)$ and the $\psi(3770)$, no further pole is required to describe the $\psi(3770)$ line shape. In particular we derive from the pole location $M_{\psi(3770)} = 3778.8 \pm 0.3$ MeV and $\Gamma_{\psi(3770)} = 25.0 \pm 0.5$ MeV. Moreover, we find the decay to $D^+D^-$ and $D^0\bar{D}^0$ to be consistent with isospin symmetry and derive an upper bound on the branching ratio $\mathcal{B}(\psi(3770) \to \textrm{non-}D\bar{D}) < 6\%$ at $90\%$ probability.

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Cited by 2 Pith papers

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  1. Dispersive Analysis of $D$- and $B$-Meson Form Factors with Chiral and Heavy-Quark Constraints

    hep-ph 2026-03 conditional novelty 7.0

    The isovector D/D*/B/B* electromagnetic form factors are reconstructed dispersively with ππ rescattering, yielding ρ(770) coupling constants from pole residues.

  2. Complex chromoelectric polarizability of a heavy-quarkonium resonance: pole definition and channel-complete pNRQCD matching

    hep-ph 2026-08 accept novelty 6.0

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