Amplitude analysis of scattering
arXiv:1603.00868 · doi:10.1088/1742-6596/730/1/012010
Abstract
We present the results of a coupled-channel model for scattering in the resonance region. The model fulfills unitarity, has the correct analytical properties for the amplitudes and the partial waves have the right threshold behavior. The parameters of the model have been established by fitting single-energy partial waves up to and up to 2.15 GeV of center-of-mass energy. The and spectra has been obtained, providing a comprehensive picture of the hyperon spectrum. We use the structure of the hyperon spectrum and Regge phenomenology to gain insight on the nature of the resonances.
Proceedings of the 39th Symposium on Nuclear Physics 2016 Cocoyoc, Mexico
References in corpus (20)
- Observation of resonances consistent with pentaquark states in decays
- Effective Kbar N interaction based on chiral SU(3) dynamics
- Coupled scattering in -wave and the resonance from lattice QCD
- Lattice QCD Evidence that the Lambda(1405) Resonance is an Antikaon-Nucleon Molecule
- Resonances in coupled πK,ηK scattering from quantum chromodynamics
- Constraints on the chiral unitary amplitude from photoproduction data
- Multichannel one-to-two transition amplitudes in a finite volume
- Multichannel 0-to-2 and 1-to-2 transition amplitudes for arbitrary spin particles in a finite volume
- Excited hadrons on the lattice: Baryons
- Issues and Opportunities in Exotic Hadrons
- Strange baryon spectroscopy in the relativistic quark model
- Quark-Model Identification of Baryon Ground and Resonant States
- Dynamical coupled-channels model of reactions (I): Determination of partial-wave amplitudes
- Dynamical coupled-channels model of reactions (II): Extraction of and hyperon resonances
- Coupled-Channel Model for Scattering in the Resonant Region
- On the nature of the and from their behavior in chiral dynamics
- Analysis Tools for Next-Generation Hadron Spectroscopy Experiments
- Properties of Nucleon Resonances by means of a Genetic Algorithm
- Understanding the Nature of through Regge Physics
- Properties of the Lambda(1520) Resonance from High-Precision Electroproduction Data