English

Light scalar quarkonia from Laplace sum rule at NLO

High Energy Physics - Phenomenology 2024-10-14 v1

Abstract

We review our results on light scalar quarkonia (qˉq\bar{q}q and four-quark states) from (inverse) QCD Laplace sum rules (LSR) and their ratios R{\cal R} within stability criteria and including higher order perturbative (PT) corrections up to the (estimated) O(αs5){\mathcal O}(\alpha_{s}^{5}). As the Operator Product Expansion (OPE) usually converges for D68D\leqslant 6-8, we evaluated the QCD spectral functions at Lowest Order (LO) of PT QCD and up to the D=6D=6 dimension vaccum condensates. We request that the optimal results obey the constraint: Pole (Resonance) contribution to the spectral integral is larger than the QCD continuum one which excludes an on-shell mass around (500600)(500-600)MeV obtained for values of the QCD continuum threshold tc(11.5)t_c\leqslant(1\sim 1.5) GeV2^2. Our results for the different assignments of the scalar mesons are compiled in Tables 1 to 3

Keywords

Cite

@article{arxiv.2410.08281,
  title  = {Light scalar quarkonia from Laplace sum rule at NLO},
  author = {R. M. Albuquerque and S. Narison and D. Rabetiarivony},
  journal= {arXiv preprint arXiv:2410.08281},
  year   = {2024}
}

Comments

Talk given at QCD24 International conference (8-12 July 2024, Montpellier - France)