Single-particle density matrix for a time-dependent strongly interacting one-dimensional Bose gas
Quantum Gases
2015-05-13 v1
Abstract
We derive a -expansion for the single-particle density matrix of a strongly interacting time-dependent one-dimensional Bose gas, described by the Lieb-Liniger model ( denotes the strength of the interaction). The formalism is derived by expanding Gaudin's Fermi-Bose mapping operator up to -terms. We derive an efficient numerical algorithm for calculating the density matrix for time-dependent states in the strong coupling limit, which evolve from a family of initial conditions in the absence of an external potential. We have applied the formalism to study contraction dynamics of a localized wave packet upon which a parabolic phase is imprinted initially.
Cite
@article{arxiv.0907.4608,
title = {Single-particle density matrix for a time-dependent strongly interacting one-dimensional Bose gas},
author = {R. Pezer and T. Gasenzer and H. Buljan},
journal= {arXiv preprint arXiv:0907.4608},
year = {2015}
}