Fermionic Isometric Tensor Network States in Two Dimensions

Fuente: arXiv
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Autores principales: Dai, Zhehao, Wu, Yantao, Wang, Taige, Zaletel, Michael P.
Formato: Preprint
Publicado: 2022
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author Dai, Zhehao
Wu, Yantao
Wang, Taige
Zaletel, Michael P.
author_facet Dai, Zhehao
Wu, Yantao
Wang, Taige
Zaletel, Michael P.
contents We generalize isometric tensor network states to fermionic systems, paving the way for efficient adaptations of 1D tensor network algorithms to 2D fermionic systems. As the first application of this formalism, we developed and benchmarked a time-evolution block-decimation (TEBD) algorithm for real-time and imaginary-time evolution. The imaginary-time evolution produces ground-state energies for gapped systems, systems with a Dirac point, and systems with gapless edge modes to good accuracy. The real-time TEBD captures the scattering of two fermions and the chiral edge dynamics on the boundary of a Chern insulator.
format Preprint
id arxiv_https___arxiv_org_abs_2211_00043
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Fermionic Isometric Tensor Network States in Two Dimensions
Dai, Zhehao
Wu, Yantao
Wang, Taige
Zaletel, Michael P.
Strongly Correlated Electrons
Quantum Physics
We generalize isometric tensor network states to fermionic systems, paving the way for efficient adaptations of 1D tensor network algorithms to 2D fermionic systems. As the first application of this formalism, we developed and benchmarked a time-evolution block-decimation (TEBD) algorithm for real-time and imaginary-time evolution. The imaginary-time evolution produces ground-state energies for gapped systems, systems with a Dirac point, and systems with gapless edge modes to good accuracy. The real-time TEBD captures the scattering of two fermions and the chiral edge dynamics on the boundary of a Chern insulator.
title Fermionic Isometric Tensor Network States in Two Dimensions
topic Strongly Correlated Electrons
Quantum Physics
url https://arxiv.org/abs/2211.00043