Generalized Lüscher Formula in Multi-channel Baryon-Meson Scattering
arXiv:1209.2201 · doi:10.1103/PhysRevD.87.014502
Abstract
Lüscher's formula relates the elastic scattering phase shifts to the two-particle energy levels in a finite cubic box. The original formula was obtained for elastic scattering of two massive spinless particles in the center of mass frame. In this paper, we consider the case for the scattering of a spin 1/2 particle with a spinless particle in multi-channel scattering. A generalized relation between the energy of two particle system and the scattering matrix elements is established. We first obtain this relation using quantum-mechanics in both center-of-mass frame and in a general moving frame. The result is then generalized to quantum field theory using methods outlined in Ref. \cite{Hansen:2012tf}. We verify that the results obtained using both methods are equivalent up to terms that are exponentially suppressed in the box size.
One reference added
References in corpus (2)
Cited by in corpus (48)
- Hadronic molecules
- The states: experimental and theoretical status and perspectives
- Microscopic Clustering in Light Nuclei
- Scattering processes and resonances from lattice QCD
- Two-particle multichannel systems in a finite volume with arbitrary spin
- Expressing the three-particle finite-volume spectrum in terms of the three-to-three scattering amplitude
- Three particle quantization condition in a finite volume: 2. general formalism and the analysis of 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
- The pion-pion scattering amplitude and timelike pion form factor from lattice QCD
- Spectrum of three-body bound states in a finite volume
- Baryon-Baryon Interactions and Spin-Flavor Symmetry from Lattice Quantum Chromodynamics
- Two-Nucleon Systems in a Finite Volume: (I) Quantization Conditions
- Towards grounding nuclear physics in QCD
- A framework for the calculation of the transition form factors on the lattice
- Hadrons and Nuclei
- Two-Nucleon Systems in a Finite Volume: (II) 3S1-3D1 Coupled Channels and the Deuteron
- Finite-volume Hamiltonian method for coupled channel interactions in lattice QCD
- Two-Baryon Systems with Twisted Boundary Conditions
- Multi-particle systems on the lattice and chiral extrapolations: a brief review
- Lattice QCD study of the s-wave scattering lengths in the I=0 and 2 channels
- Two- and three-body interactions in theory from lattice simulations
- Form factors of two-hadron states from a covariant finite-volume formalism
- Novel approaches in Hadron Spectroscopy
- Two-Particle Elastic Scattering in a Finite Volume Including QED
- Precise determination of lattice phase shifts and mixing angles
- Finite volume effects and quark mass dependence of the N(1535) and N(1650)
- Breaking and restoration of rotational symmetry on the lattice for bound state multiplets
- Light- and strange-quark mass dependence of the meson revisited
- Nuclear Reactions from Lattice QCD
- Partial Wave Mixing in Hamiltonian Effective Field Theory
- Scattering phaseshift formulas for mesons and baryons in elongated boxes
- Hamiltonian effective field theory in elongated or moving finite volume
- Study of decuplet baryon resonances from lattice QCD
- Partial twisting for scalar mesons
- Fermion-dimer scattering using an impurity lattice Monte Carlo approach and the adiabatic projection method
- Regularisation in Nonperturbative Extensions of Effective Field Theory
- Bound states on the lattice with partially twisted boundary conditions
- Generalized Lüscher's Formula in Multichannel Baryon-Baryon Scattering
- Breaking and restoration of rotational symmetry for irreducible tensor operators on the lattice
- Partial-wave and helicity operators for the scattering of two hadrons in lattice QCD
- Review on Hadron Spectroscopy
- Higher order finite volume quantization conditions for two spinless particles
- Three particles on the lattice
- Higher order quantization conditions for two-body scattering with spin
- Formal Developments for Lattice QCD with Applications to Hadronic Systems
- Low Energy Continuum and Lattice Effective Field Theories
- Recent results from Lattice QCD