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Phase diagram of the quantum Ising model with long-range interactions on an infinite-cylinder triangular lattice

Authors :
Stephen D. Bartlett
Ian P. McCulloch
S. N. Saadatmand
Publication Year :
2018

Abstract

Obtaining quantitative ground-state behavior for geometrically-frustrated quantum magnets with long-range interactions is challenging for numerical methods. Here, we demonstrate that the ground states of these systems on two-dimensional lattices can be efficiently obtained using state-of-the-art translation-invariant variants of matrix product states and density-matrix renormalization-group algorithms. We use these methods to calculate the fully-quantitative ground-state phase diagram of the long-range interacting triangular Ising model with a transverse field on 6-leg infinite-length cylinders, and scrutinize the properties of the detected phases. We compare these results with those of the corresponding nearest neighbor model. Our results suggest that, for such long-range Hamiltonians, the long-range quantum fluctuations always lead to long-range correlations, where correlators exhibit power-law decays instead of the conventional exponential drops observed for short-range correlated gapped phases. Our results are relevant for comparisons with recent ion-trap quantum simulator experiments that demonstrate highly-controllable long-range spin couplings for several hundred ions.<br />16 pages, 12 figures, and no supplemental materials. v4: equivalent to the published version, except a few minor typographical and notation corrections

Details

Language :
English
Database :
OpenAIRE
Accession number :
edsair.doi.dedup.....6b4664656371f134e2c29d381dc333e0