Phase Transition for Discrete Non Linear Schrödinger Equation in Three and Higher Dimensions
arXiv:2212.00276
Abstract
We analyze the thermodynamics of the focusing discrete nonlinear Schrödinger equation in dimensions with general nonlinearity and under a model with two parameters, representing inverse temperature and strength of the nonlinearity, respectively. We prove the existence of limiting free energy and analyze the phase diagram for general . We also prove the existence of a continuous phase transition curve that divides the parametric plane into two regions involving the appearance or non-appearance of solitons. Appropriate upper and lower bounds for the curve are constructed. We also look at the typical behavior of a function chosen from the Gibbs measure for certain parts of the phase diagram.