Extended degenerate perturbation theory for the Floquet-Hilbert space

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Braver, Yakov, Anisimovas, Egidijus
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929459702005760
author Braver, Yakov
Anisimovas, Egidijus
author_facet Braver, Yakov
Anisimovas, Egidijus
contents We consider construction of effective Hamiltonians for periodically driven interacting systems in the case of resonant driving. The standard high-frequency expansion is not expected to converge due to the resonant creation of collective excitations, and one option is to resort to the application of degenerate perturbation theory (DPT) in the Floquet-Hilbert space. We propose an extension of DPT whereby the degenerate subspace includes not only the degenerate levels of interest but rather all levels in a Floquet zone. The resulting approach, which we call extended DPT (EDPT), is shown to resemble a high-frequency expansion, provided the quasienergy matrix is constructed such that each $m$th diagonal block contains energies reduced to the $m$th Floquet zone. The proposed theory is applied to a driven Bose-Hubbard model and is shown to yield more accurate quasienergy spectra than the conventional DPT. The computational complexity of EDPT is intermediate between DPT and the numerically exact approach, thus providing a practical compromise between accuracy and efficiency.
format Preprint
id arxiv_https___arxiv_org_abs_2405_01383
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Extended degenerate perturbation theory for the Floquet-Hilbert space
Braver, Yakov
Anisimovas, Egidijus
Quantum Gases
We consider construction of effective Hamiltonians for periodically driven interacting systems in the case of resonant driving. The standard high-frequency expansion is not expected to converge due to the resonant creation of collective excitations, and one option is to resort to the application of degenerate perturbation theory (DPT) in the Floquet-Hilbert space. We propose an extension of DPT whereby the degenerate subspace includes not only the degenerate levels of interest but rather all levels in a Floquet zone. The resulting approach, which we call extended DPT (EDPT), is shown to resemble a high-frequency expansion, provided the quasienergy matrix is constructed such that each $m$th diagonal block contains energies reduced to the $m$th Floquet zone. The proposed theory is applied to a driven Bose-Hubbard model and is shown to yield more accurate quasienergy spectra than the conventional DPT. The computational complexity of EDPT is intermediate between DPT and the numerically exact approach, thus providing a practical compromise between accuracy and efficiency.
title Extended degenerate perturbation theory for the Floquet-Hilbert space
topic Quantum Gases
url https://arxiv.org/abs/2405.01383