A Universal Model of Floquet Operator Krylov Space

Fuente: arXiv
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Auteurs principaux: Yeh, Hsiu-Chung, Mitra, Aditi
Format: Preprint
Publié: 2023
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author Yeh, Hsiu-Chung
Mitra, Aditi
author_facet Yeh, Hsiu-Chung
Mitra, Aditi
contents It is shown that the stroboscopic time-evolution under a Floquet unitary, in any spatial dimension, and of any Hermitian operator, can be mapped to an operator Krylov space which is identical to that generated by the edge operator of the non-interacting Floquet transverse-field Ising model (TFIM) in one-spatial dimension, and with inhomogeneous Ising and transverse field couplings. The latter has four topological phases reflected by the absence (topologically trivial) or presence (topologically non-trivial) of edge modes at $0$ and/or $π$ quasi-energies. It is shown that the Floquet dynamics share certain universal features characterized by how the Krylov parameters vary in the topological phase diagram of the Floquet TFIM with homogeneous couplings. These results are highlighted through examples, all chosen for numerical convenience to be in one spatial dimension: non-integrable Floquet spin $1/2$ chains and Floquet $Z_3$ clock model where the latter hosts period-tripled edge modes.
format Preprint
id arxiv_https___arxiv_org_abs_2311_15116
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle A Universal Model of Floquet Operator Krylov Space
Yeh, Hsiu-Chung
Mitra, Aditi
Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
Statistical Mechanics
Quantum Physics
It is shown that the stroboscopic time-evolution under a Floquet unitary, in any spatial dimension, and of any Hermitian operator, can be mapped to an operator Krylov space which is identical to that generated by the edge operator of the non-interacting Floquet transverse-field Ising model (TFIM) in one-spatial dimension, and with inhomogeneous Ising and transverse field couplings. The latter has four topological phases reflected by the absence (topologically trivial) or presence (topologically non-trivial) of edge modes at $0$ and/or $π$ quasi-energies. It is shown that the Floquet dynamics share certain universal features characterized by how the Krylov parameters vary in the topological phase diagram of the Floquet TFIM with homogeneous couplings. These results are highlighted through examples, all chosen for numerical convenience to be in one spatial dimension: non-integrable Floquet spin $1/2$ chains and Floquet $Z_3$ clock model where the latter hosts period-tripled edge modes.
title A Universal Model of Floquet Operator Krylov Space
topic Strongly Correlated Electrons
Mesoscale and Nanoscale Physics
Statistical Mechanics
Quantum Physics
url https://arxiv.org/abs/2311.15116