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  5. Four-Spin Terms and the Origin of the Chiral Spin Liquid in Mott Insulators on the Triangular Lattice

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Article
en
2021

Four-Spin Terms and the Origin of the Chiral Spin Liquid in Mott Insulators on the Triangular Lattice

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en
2021
Vol 127 (8)
Vol. 127
DOI: 10.1103/physrevlett.127.087201

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Joel Moore
Joel Moore

University of California, Berkeley

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Tessa Cookmeyer
Johannes Motruk
Joel Moore

Abstract

At strong repulsion, the triangular-lattice Hubbard model is described by s=1/2 spins with nearest-neighbor antiferromagnetic Heisenberg interactions and exhibits conventional 120° order. Using the infinite density matrix renormalization group and exact diagonalization, we study the effect of the additional four-spin interactions naturally generated from the underlying Mott-insulator physics of electrons as the repulsion decreases. Although these interactions have historically been connected with a gapless ground state with emergent spinon Fermi surface, we find that, at physically relevant parameters, they stabilize a chiral spin liquid (CSL) of Kalmeyer-Laughlin (KL) type, clarifying observations in recent studies of the Hubbard model. We then present a self-consistent solution based on a mean-field rewriting of the interaction to obtain a Hamiltonian with similarities to the parent Hamiltonian of the KL state, providing a physical understanding for the origin of the CSL.

How to cite this publication

Tessa Cookmeyer, Johannes Motruk, Joel Moore (2021). Four-Spin Terms and the Origin of the Chiral Spin Liquid in Mott Insulators on the Triangular Lattice. , 127(8), DOI: https://doi.org/10.1103/physrevlett.127.087201.

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Publication Details

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Article

Year

2021

Authors

3

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0

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0

Language

en

DOI

https://doi.org/10.1103/physrevlett.127.087201

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