The structure, mixing angle, mass and couplings of the light scalar and mesons
arXiv:1711.11553 · doi:10.1016/j.physletb.2018.03.085
Abstract
The mixing angle, mass and couplings of the light scalar mesons and are calculated in the framework of QCD two-point sum rule approach by assuming that they are tetraquarks with diquark-antidiquark structures. The mesons are treated as mixtures of the heavy and light scalar diquark-antidiquark components. We extract from corresponding sum rules the mixing angles and of these states and evaluate the masses and couplings of the particles and .
6 Pages and 1 Figure. To be published in Phys. Lett. B
References in corpus (7)
- Glueballs, Hybrids, Multiquarks. Experimental facts versus QCD inspired concepts
- A Theory of Scalar Mesons
- Transition form factors and in QCD
- f0(980) meson as a K bar K molecule in a phenomenological Lagrangian approach
- Mixings of 4-quark components in light non-singlet scalar mesons in QCD sum rules
- Sigma meson in pole-dominated QCD sum rules
- Mixing Angle of Hadrons in QCD: A New View
Cited by in corpus (12)
- Study the molecular nature of , , and states
- form factors and the width effect from light-cone sum rules
- Nature of the vector resonance
- Resonance as a vector tetraquark and its strong decay channels
- Beautiful mathematics for beauty-full and other multi-heavy hadronic systems
- The Scalar Hexaquark : a Candidate to Dark Matter?
- Further signatures to support the tetraquark mixing framework for the two light-meson nonets
- Light axial-vector and vector resonances and
- Probing isovector scalar mesons in the charmless three-body decays
- The strong decays of the light scalar mesons and
- Rare Radiative Decays of Vector and Axial-Vector Mesons to Final States
- Study decays into and a scalar or vector meson