Analytical recursive method to ascertain multisite entanglement in doped quantum spin ladders
Quantum Physics
2017-08-24 v2 Strongly Correlated Electrons
Abstract
We formulate an analytical recursive method to generate the wave function of doped short-range resonating valence bond (RVB) states as a tool to efficiently estimate multisite entanglement as well as other physical quantities in doped quantum spin ladders. We prove that doped RVB ladder states are always genuine multipartite entangled. Importantly, our results show that within specific doping concentration and model parameter regimes, the doped RVB state essentially characterizes the trends of genuine multiparty entanglement in the exact ground states of the Hubbard model with large onsite interactions, in the limit which yields the - Hamiltonian.
Keywords
Cite
@article{arxiv.1604.06683,
title = {Analytical recursive method to ascertain multisite entanglement in doped quantum spin ladders},
author = {Sudipto Singha Roy and Himadri Shekhar Dhar and Debraj Rakshit and Aditi Sen De and Ujjwal Sen},
journal= {arXiv preprint arXiv:1604.06683},
year = {2017}
}
Comments
11 pages, 6 figures, RevTex 4-1, accepted in Phys. Rev. B