Overcomplete Bases for S = 1 Spin Liquids
Abstract
For a system with even number of spins, the product states of two-body singlets, called the singlet pair states (SPSs), are overcomplete bases for the Hilbert space of many-body singlets. If the system contains odd number of spins, a singlet state can be decomposed as a superposition of all of the following configurations, in each configuration three of the spins form a three-body singlet and the remaining form two-body singlet pairs. This indicates that a spin liquid is especially a resonating-valence bond state. Although this conclusion is no longer valid for symmetric systems, it can be generalized to an integer spin- system if it has an enlarged symmetry. Similar results can also be obtained for systems with symmetry.
Keywords
Cite
@article{arxiv.1411.0754,
title = {Overcomplete Bases for S = 1 Spin Liquids},
author = {Zheng-Xin Liu},
journal= {arXiv preprint arXiv:1411.0754},
year = {2014}
}
Comments
8 pages + reference