Couplings in coupled channels versus wave functions in the case of resonances: application to the two states
arXiv:1007.3923 · doi:10.1103/PhysRevD.83.014003
Abstract
In this paper we develop a formalism to evaluate wave functions in momentum and coordinate space for the resonant states dynamically generated in a unitary coupled channel approach. The on shell approach for the scattering matrix, commonly used, is also obtained in Quantum Mechanics with a separable potential, which allows one to write wave functions in a trivial way. We develop useful relationships among the couplings of the dynamically generated resonances to the different channels and the wave functions at the origin. The formalism provides an intuitive picture of the resonances in the coupled channel approach, as bound states of one bound channel, which decays into open ones. It also provides an insight and practical rules for evaluating couplings of the resonances to external sources and how to deal with final state interaction in production processes. As an application of the formalism we evaluate the wave functions of the two states in the , and other coupled channels.
23 pages, 3 figures. v2: Added a section to calculate form factors
References in corpus (9)
- K^- p scattering length from scattering experiments
- On the Strangeness -1 S-wave Meson-Baryon Scattering
- Kaonic production of Lambda(1405) off deuteron target in chiral dynamics
- Photon induced Lambda(1520) production and the role of the K^* exchange
- Low-lying even parity meson resonances and spin-flavor symmetry
- Electromagnetic mean squared radii of Lambda(1405) in chiral dynamics
- Study of exotic hadrons in S-wave scatterings induced by chiral interaction in the flavor symmetric limit
- Role of the (1535) in the and reactions
- Coupled-channel effects in the pp -> ppK+K- reaction
Cited by in corpus (19)
- Comprehensive analysis of the wave function of a hadronic resonance and its compositeness
- coupled channel analysis and predictions
- The system with chiral dynamics
- Two-body wave functions and compositeness from scattering amplitudes. I. General properties with schematic models
- Mixing of pseudoscalar-baryon and vector-baryon in the sector and the (1535) and (1650) resonances
- Plausible explanation of the puzzle
- Study of the and systems
- -- interactions in finite volume and the
- Scalar resonances in the decay
- The composite nature of the resonance
- Faddeev fixed-center approximation to the system and the hidden charm state
- and scattering from decay
- Double-pole nature of studied with coupled-channel complex scaling method using complex-range Gaussian basis
- Is two-poles' one state or two?
- Predictions of super-exotic heavy mesons from interactions
- Faddeev fixed-center approximation to the , and systems
- Possible molecules of triple-heavy pentaquarks within the extended local hidden gauge formalism
- Dynamically generated states from the , , and systems within the fixed-center approximation
- Correlation function for the interaction and the issue of elastic unitarity