Coherent spatial control of wave packet dynamics on quantum lattices

Fuente: arXiv
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Main Authors: Tutunnikov, Ilia, Chuang, Chern, Cao, Jianshu
Format: Preprint
Published: 2023
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author Tutunnikov, Ilia
Chuang, Chern
Cao, Jianshu
author_facet Tutunnikov, Ilia
Chuang, Chern
Cao, Jianshu
contents Quantum lattices are pivotal in the burgeoning fields of quantum materials and information science. Rapid developments in microscopy and quantum engineering allow for preparing and monitoring wave-packet dynamics on quantum lattices with increasing spatial and temporal resolution. Motivated by these emerging research interests, we present an analytical study of wave packet diffusivity and diffusion length on tight-binding quantum lattices subject to stochastic noise. Our analysis points to the crucial role of spatial coherence and predicts a set of novel phenomena: noise can enhance the transient diffusivity and diffusion length of sufficiently extended initial states; A smooth Gaussian initial state spreads slower than a localized initial state; A standing or traveling initial state with large momentum spreads faster than a localized initial state and exhibits a noise-induced peak in the transient diffusivity; The change in the time-dependent diffusivity and diffusion length relative to a localized initial state follows a universal dependence on the Gaussian width. These theoretical predictions and the underlying mechanism of spatial coherence suggest the possibility of controlling the wave packet dynamics on quantum lattices by spatial manipulations, which will have implications for materials science and quantum technologies.
format Preprint
id arxiv_https___arxiv_org_abs_2311_07254
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Coherent spatial control of wave packet dynamics on quantum lattices
Tutunnikov, Ilia
Chuang, Chern
Cao, Jianshu
Quantum Physics
Chemical Physics
Quantum lattices are pivotal in the burgeoning fields of quantum materials and information science. Rapid developments in microscopy and quantum engineering allow for preparing and monitoring wave-packet dynamics on quantum lattices with increasing spatial and temporal resolution. Motivated by these emerging research interests, we present an analytical study of wave packet diffusivity and diffusion length on tight-binding quantum lattices subject to stochastic noise. Our analysis points to the crucial role of spatial coherence and predicts a set of novel phenomena: noise can enhance the transient diffusivity and diffusion length of sufficiently extended initial states; A smooth Gaussian initial state spreads slower than a localized initial state; A standing or traveling initial state with large momentum spreads faster than a localized initial state and exhibits a noise-induced peak in the transient diffusivity; The change in the time-dependent diffusivity and diffusion length relative to a localized initial state follows a universal dependence on the Gaussian width. These theoretical predictions and the underlying mechanism of spatial coherence suggest the possibility of controlling the wave packet dynamics on quantum lattices by spatial manipulations, which will have implications for materials science and quantum technologies.
title Coherent spatial control of wave packet dynamics on quantum lattices
topic Quantum Physics
Chemical Physics
url https://arxiv.org/abs/2311.07254