Affiliation:
1. Flatiron Institute
2. New York University
3. San José State University
4. University of California, Davis
Abstract
Quantum gas microscopy has developed into a powerful tool to explore strongly correlated quantum systems. However, discerning phases with topological or off-diagonal long range order requires the ability to extract these correlations from site-resolved measurements. Here, we show that a multiscale complexity measure can pinpoint the transition to and from the bond ordered wave phase of the one-dimensional extended Hubbard model with an off-diagonal order parameter, sandwiched between diagonal charge and spin density wave phases, using only diagonal descriptors. We study the model directly in the thermodynamic limit using the recently developed variational uniform matrix product states algorithm, and draw our samples from degenerate ground states related by global spin rotations, emulating the projective measurements that are accessible in experiments. Our results will have important implications for the study of exotic phases using optical lattice experiments.
Published by the American Physical Society
2024
Funder
U.S. Department of Energy
Office of Science
Air Force Office of Scientific Research
Publisher
American Physical Society (APS)
Cited by
2 articles.
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