Multiple-particle interaction in dimensional lattice model
arXiv:1808.07397 · doi:10.1103/PhysRevD.99.014501
Abstract
Finite volume multiple-particle interaction is studied in a two-dimensional complex lattice model. The existence of analytical solutions to the model in two-dimensional space and time makes it a perfect model for the numerical study of finite volume effects of multi-particle interaction. The spectra from multiple particles are extracted from the Monte Carlo simulation on various lattices in several moving frames. The -matrix of multi-particle scattering in theory is completely determined by two fundamental parameters: single particle mass and the coupling strength of two-to-two particle interaction. These two parameters are fixed by studying single-particle and two-particle spectra. Due to the absence of the diffraction effect in the model, three-particle quantization conditions are given in a simple analytical form. The three-particle spectra from simulation show remarkable agreement with the prediction of exact solutions.