Scattering of decuplet baryons in chiral effective field theory
arXiv:1708.08071 · doi:10.1140/epjc/s10052-017-5309-4
Abstract
A formalism for treating the scattering of decuplet baryons in chiral effective field theory is developed. The minimal Lagrangian and potentials in leading-order SU(3) chiral effective field theory for the interactions of octet baryons () and decuplet baryons () for the transitions , , , , , and are provided. As an application of the formalism we compare with results from lattice QCD simulations for and scattering. Implications of our results pertinent to the quest for dibaryons are discussed.
26 pages, 6 figures; minor corrections in the text, references added
References in corpus (16)
- Chiral effective field theory and nuclear forces
- Improved chiral nucleon-nucleon potential up to next-to-next-to-next-to-leading order
- Evidence for a Bound H-dibaryon from Lattice QCD
- ABC Effect in Basic Double-Pionic Fusion --- Observation of a new resonance?
- Hyperon-nucleon interactions - a chiral effective field theory approach
- On the History of Dibaryons and their Final Observation
- Three-body model calculations of Nucleon-Delta and Delta-Delta dibaryon resonances
- Future Prospects for Hadron Physics at PANDA
- Spin-2 Dibaryon from Lattice QCD
- QCD sum rule Study of the
- Density-dependent effective baryon-baryon interaction from chiral three-baryon forces
- Low-energy theorems for nucleon-nucleon scattering at unphysical pion masses
- Scalar Lambda N and Lambda Lambda interaction in a chiral unitary approach
- Quark mass dependence of H-dibaryon in scattering
- Study on N Omega-bar systems in a chiral quark model
- The width of the -resonance at two loop order in baryon chiral perturbation theory