The New Charm-Strange Resonances in the D^- K^+ Channel
Abstract
We evaluate the masses and decay constants of the and open-charm tetraquarks and molecular states from QCD spectral sum rules (QSSR) by using QCD Laplace sum rule (LSR). This method takes into account the stability criteria where the factorized perturbative NLO corrections and the contributions of quark and gluon condensates up to dimension-6 in the OPE are included. We confront our results with the invariant mass recently reported by LHCb from decays. We expect that the resonance near the threshold can be originated from the molecule and/or scattering. The scalar state and the resonance (if ) can emerge from a minimal mixing model, with a tiny mixing angle , between a scalar Tetramole (superposition of nearly degenerated hypothetical molecules and compact tetraquarks states with the same quantum numbers), having a mass MeV, and the first radial excitation of the molecule with mass MeV. In an analogous way, the and the (if ) could be a mixture between the vector Tetramole , with a mass MeV, and its first radial excitation having a mass MeV with an angle . A (non)-confirmation of these statements requires experimental findings of the quantum numbers of the resonances at and MeV.
Keywords
Cite
@article{arxiv.2102.04622,
title = {The New Charm-Strange Resonances in the D^- K^+ Channel},
author = {R. M. Albuquerque and S. Narison and D. Rabetiarivony and G. Randriamanatrika},
journal= {arXiv preprint arXiv:2102.04622},
year = {2021}
}
Comments
Talk given at 23rd High-Energy Physics International Conference in Quantum Chromodynamics (QCD 20, 35th anniversary), 27-30 October 2020, Montpellier-France (v2: typos corrected, results unchanged)