English

Scrutinizing the Light Scalar Quarkonia from LSR at Higher Orders

High Energy Physics - Phenomenology 2023-08-08 v2 High Energy Physics - Experiment High Energy Physics - Lattice

Abstract

We scrutinize, improve some determinations of the masses and couplings of light scalar quarkonia (qˉq\bar qq and four-quark states) and present new results for the π+π,K+K,\pi^+\pi^-,K^+K^-,\dots molecules using QCD Laplace Sum Rule (LSR) truncated at the D=6D=6 dimension vacuum condensates. We pay a special attention on the higher order perturbative (PT) corrections up to the (estimated) O(αs5){\cal O}(\alpha_s^5) which improve the quality of the analysis. We request that the optimal results obey the rigorous constraint: {\it Resonance \geq QCD continuum contributions (RP/C1R_{P/C}\geq 1)} in the LSR which excludes a Breit-Wigner / on-shell (not to be confused with a complex pole) scalar meson mass around (500-600) MeV obtained for values [tc(11.5)t_c\leq (1\sim 1.5) GeV2^2] of the QCD continuum threshold. Mass-splittings due to SU3SU3 breakings are small. We discuss the different assignements of the observed scalar mesons below 2 GeV in the Conclusions where the I=0I=0 states are compared with the scalar gluonia. The results are compiled in Table 3 to 6.

Keywords

Cite

@article{arxiv.2305.02421,
  title  = {Scrutinizing the Light Scalar Quarkonia from LSR at Higher Orders},
  author = {R. Albuquerque and S. Narison and D. Rabetiarivony},
  journal= {arXiv preprint arXiv:2305.02421},
  year   = {2023}
}

Comments

Latex file sources, 55 PDF pages, 32 figures, 6 Tables. Version to be published in Nuclear Physics A