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Confirmation of the existence of an exotic state in the π D system

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arxiv 2106.15391 v2 pith:XJQ5YLVV submitted 2021-06-29 hep-ph hep-lat

Confirmation of the existence of an exotic state in the π D system

classification hep-ph hep-lat
keywords statesstateexistsinteractionsmesonsrepresentationbosonscharmed
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In recent years many candidates for states beyond the most simple realization of the quark model were found in various experiments around the world. However, so far no consensus exists on their structure, although there is strong evidence that at least some of those are dynamically generated from meson-meson interactions. In this Letter we provide an important missing piece from the theoretical side to prove that the lightest open charm strange and non-strange scalars $D_{s0}^*(2317)$ and $D_0^*$ as well as their axial-vector partner states can all be understood as emerging from the interactions between Goldstone bosons stemming from the spontaneous breaking of chiral symmetry and the ground state charmed mesons. For that purpose we exploit the flavor multiplet structure of the lightest open-charm positive-parity scalar states in an SU(3) symmetric lattice QCD simulation at large pion masses to establish that there exists a bound state in the flavor-sextet representation, which cannot emerge for quark-antiquark states but appears naturally for four-quark configurations. Moreover, we find repulsion in the $[15]$ representation and thus no single-particle state in this representation exists, falsifying the expectation for tetraquark models. The findings establish the pattern predicted for the interactions of Goldstone bosons with $D$ mesons from chiral symmetry and the paradigm of the lowest-lying positive-parity charmed mesons as dynamically generated states.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. A Paradigm for the Coupled-Channel Origin of Resonances: the Exotic $T_{c\bar{s}}$ in $D_{s1}(2460/2536)\to D_s\pi\pi$

    hep-ph 2025-10 conditional novelty 6.0

    An off-diagonal DK–D_sπ coupled-channel interaction generates the T_cbar{s} pole on the second Riemann sheet, and predicts a single-peak D_s1(2536) decay.

  2. Analysis of the hadronic molecules $DK$, $D^*K$, $DK^*$ and their bottom analogs with QCD sum rules

    hep-ph 2025-08 conditional novelty 4.0

    QCD sum rules yield masses 2.322 GeV (DK), 2.457 GeV (D*K), 2.538 GeV (DK*) matching D_s0(2317), D_s1(2460), D_s1(2536), with BK* at 6.158 GeV below threshold suggesting a bound state.