Engineering micromotion in Floquet prethermalization via space-time symmetries

Fuente: arXiv
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Autori principali: Na, Ilyoun, Kemp, Jack, Griffin, Sinéad M., Peng, Yang
Natura: Preprint
Pubblicazione: 2024
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author Na, Ilyoun
Kemp, Jack
Griffin, Sinéad M.
Peng, Yang
author_facet Na, Ilyoun
Kemp, Jack
Griffin, Sinéad M.
Peng, Yang
contents We present a systematic framework for Floquet prethermalization under strong resonant driving, emphasizing the pivotal role of dynamical space-time symmetries. Our approach demonstrates how dynamical space-time symmetries map onto the projective static symmetry group of the prethermal Hamiltonian governing the prethermal regime. We introduce techniques for detecting dynamical symmetries through the time evolution of local observables, facilitating a detailed analysis of micromotion within each period and surpassing the limitations of conventional stroboscopic Floquet prethermal dynamics. To implement this framework, we present a prethermal protocol that preserves order-two dynamical symmetry in a spin-ladder model, confirming the predicted relationships between the expectation values of local observables at distinct temporal points in the Floquet cycle, linked by this symmetry.
format Preprint
id arxiv_https___arxiv_org_abs_2412_09577
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Engineering micromotion in Floquet prethermalization via space-time symmetries
Na, Ilyoun
Kemp, Jack
Griffin, Sinéad M.
Peng, Yang
Quantum Physics
Statistical Mechanics
We present a systematic framework for Floquet prethermalization under strong resonant driving, emphasizing the pivotal role of dynamical space-time symmetries. Our approach demonstrates how dynamical space-time symmetries map onto the projective static symmetry group of the prethermal Hamiltonian governing the prethermal regime. We introduce techniques for detecting dynamical symmetries through the time evolution of local observables, facilitating a detailed analysis of micromotion within each period and surpassing the limitations of conventional stroboscopic Floquet prethermal dynamics. To implement this framework, we present a prethermal protocol that preserves order-two dynamical symmetry in a spin-ladder model, confirming the predicted relationships between the expectation values of local observables at distinct temporal points in the Floquet cycle, linked by this symmetry.
title Engineering micromotion in Floquet prethermalization via space-time symmetries
topic Quantum Physics
Statistical Mechanics
url https://arxiv.org/abs/2412.09577