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Investigating the composition of the K^*₀(700) state with π^pmK⁰_(rm S) correlations at the LHC

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arxiv 2312.12830 v3 pith:KHR4PQ7J submitted 2023-12-20 hep-ex nucl-ex

Investigating the composition of the K^*₀(700) state with π^pmK⁰_(rm S) correlations at the LHC

classification hep-ex nucl-ex
keywords final-stateinteractionsourcestatetetraquarkcorrelationcorrelationscoupling
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The first measurements of femtoscopic correlations with the particle pair combinations $\pi^\pm$K$^0_{\rm S}$ in pp collisions at $\sqrt{s}=13$ TeV at the Large Hadron Collider (LHC) are reported by the ALICE experiment. Using the femtoscopic approach, it is shown that it is possible to study the elusive K$^*_0(700)$ particle that has been considered a tetraquark candidate for over forty years. Source and final-state interaction parameters are extracted by fitting a model assuming a Gaussian source to the experimentally measured two-particle correlation functions. The final-state interaction in the $\pi^\pm$K$^0_{\rm S}$ system is modeled through a resonant scattering amplitude, defined in terms of a mass and a coupling parameter. The extracted mass and Breit-Wigner width, derived from the coupling parameter, of the final-state interaction are found to be consistent with previous measurements of the K$^*_0(700)$. The small value and increase of the correlation strength with increasing source size support the hypothesis that the K$^*_0(700)$ is a four-quark state, i.e. a tetraquark state of the form $({\rm q_1},\overline{\rm q_2}, {\rm q_3}, \overline{\rm q_3})$ in which ${\rm q_1}$, ${\rm q_2}$, and ${\rm q_3}$ indicate the flavor of the valence quarks of the $\pi$ and K$^0_{\rm S}$. This latter trend is also confirmed via a simple geometric model that assumes a tetraquark structure of the K$^*_0(700)$ resonance.

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Cited by 4 Pith papers

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

  1. Quantum interference effects enhanced in $\pi^+p$ femtoscopic correlation functions

    hep-ph 2026-07 conditional novelty 7.0

    The π⁺p correlation peak near 140 MeV/c arises from quantum interference of incident and scattered waves, while the Δ decay peaks near 220 MeV/c; their m_T-dependent mix explains the ALICE peak shift.

  2. Charmonium-nucleon femtoscopy as a possible probe of the nucleon gravitational form factor

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    hep-ph 2026-07 unverdicted novelty 5.0

    Charmonium-nucleon femtoscopy is examined as a probe of the nucleon D-form factor by constructing an effective potential from gravitational form factors fitted to lattice data and matched to HAL QCD results.

  4. Scattering and Femtoscopic Correlation Functions of the $\Sigma_c^{++}\pi^{+}$, $\Sigma_c^{0}\pi^{-}$ and $\Sigma_b^{+}\pi^{+}$ Systems

    hep-ph 2026-03 conditional novelty 4.0

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