Correlation functions of the integrable higher-spin XXX and XXZ spin chains through the fusion method
Abstract
For the integrable higher-spin XXX and XXZ spin chains we present multiple-integral representations for the correlation function of an arbitrary product of Hermitian elementary matrices in the massless ground state. We give a formula expressing it by a single term of multiple integrals. In particular, we explicitly derive the emptiness formation probability (EFP). We assume -strings for the ground-state solution of the Bethe ansatz equations for the spin- XXZ chain, and solve the integral equations for the spin- Gaudin matrix. In terms of the XXZ coupling we define by , and put it in a region of the gapless regime: (), where () corresponds to the antiferromagnetic point. We calculate the zero-temperature correlation functions by the algebraic Bethe ansatz, introducing the Hermitian elementary matrices in the massless regime, and taking advantage of the fusion construction of the -matrix of the higher-spin representations of the affine quantum group.
Keywords
Cite
@article{arxiv.0907.0582,
title = {Correlation functions of the integrable higher-spin XXX and XXZ spin chains through the fusion method},
author = {Tetsuo Deguchi and Chihiro Matsui},
journal= {arXiv preprint arXiv:0907.0582},
year = {2011}
}
Comments
50 pages, no figure