Exact surface energy and helical spinons in the XXZ spin chain with arbitrary non-diagonal boundary fields
Abstract
An analytic method is proposed to compute the surface energy and elementary excitations of the XXZ spin chain with generic non-diagonal boundary fields. For the gapped case, in some boundary parameter regimes the contributions of the two boundary fields to the surface energy are non-additive. Such a correlation effect between the two boundaries also depends on the parity of the site number even in the thermodynamic limit . For the gapless case, contributions of the two boundary fields to the surface energy are additive due to the absence of long-range correlation in the bulk. Although the symmetry of the system is broken, exact spinon-like excitations, which obviously do not carry spin-, are observed. The present method provides an universal procedure to deal with quantum integrable systems either with or without symmetry.
Keywords
Cite
@article{arxiv.2102.02643,
title = {Exact surface energy and helical spinons in the XXZ spin chain with arbitrary non-diagonal boundary fields},
author = {Yi Qiao and Junpeng Cao and Wen-Li Yang and Kangjie Shi and Yupeng Wang},
journal= {arXiv preprint arXiv:2102.02643},
year = {2021}
}
Comments
6 pages, 4 figures