Z_c -like spectra from QCD Laplace sum rules at NLO
R.M. Albuquerque (FAT-Univ. Rio de Janeiro, BR), S. Narison (LUPM-CNRS, Montpellier, FR, iHEPMAD-Univ. Antananarivo, MG), D. Rabetiarivony, (iHEPMAD-Univ. Antananarivo, MG)

TL;DR
This paper uses QCD Laplace sum rules at NLO to analyze and interpret the spectra of exotic Z_c, Z_cs, and Z_css-like states, providing mass predictions and confirming the nature of several observed resonances.
Contribution
It introduces a comprehensive NLO analysis of Z-like spectra using QCD sum rules, including radiative corrections and negligible scattering contributions, with new mass predictions for various tetraquark and molecular states.
Findings
Z_c(3900) and Z_cs(3983) are well described by tetramoles.
Z_c(4025) fits a D*_0D_1 molecule with mass 4023(130) MeV.
Predicted Z_css mass at 4064(46) MeV.
Abstract
We present a global analysis of the observed Z_c, Z_cs and future Z_css-like spectra using the inverse Laplace transform (LSR) version of QCD spectral sum rules (QSSR) within stability criteria. Integrated compact QCD expressions of the LO spectral functions up to dimension-six condensates are given. Next-to-Leading Order (NLO) factorized perturbative contributions are included. We re-emphasize the importance to include PT radiative corrections (though numerically small) for heavy quark sum rules in order to justify the (ad hoc) definition and value of the heavy quark mass used frequently at LO in the literature. We also demonstrate that, contrary to a na\"ive qualitative 1/N_c counting, the two-meson scattering contributions to the four-quark spectral functions are numerically negligible confirming the reliability of the LSR predictions. Our results are summarized in Tables III to VI.…
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