Restoring Adiabatic State Transfer in Time-Modulated Non-Hermitian Systems

Fuente: arXiv
Saved in:
Bibliographic Details
Main Authors: Arkhipov, Ievgen I., Minganti, Fabrizio, Miranowicz, Adam, Özdemir, Şahin K., Nori, Franco
Format: Preprint
Published: 2024
Subjects:
Online Access:
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1866929501079863296
author Arkhipov, Ievgen I.
Minganti, Fabrizio
Miranowicz, Adam
Özdemir, Şahin K.
Nori, Franco
author_facet Arkhipov, Ievgen I.
Minganti, Fabrizio
Miranowicz, Adam
Özdemir, Şahin K.
Nori, Franco
contents Non-Hermitian systems have attracted much interest in recent decades, driven partly by the existence of exotic spectral singularities, known as exceptional points (EPs), where the dimensionality of the system evolution operator is reduced. Among various intriguing applications, the discovery of EPs has suggested the potential for implementing a symmetric mode switch, when encircling them in a system parameter space. However, subsequent theoretical and experimental works have revealed that {\it dynamical} encirclement of EPs invariably results in asymmetric mode conversion; namely, the mode switching depends only on the winding direction but not on the initial state. This chirality arises from the failure of adiabaticity due to the complex spectrum of non-Hermitian systems. Although the chirality revealed has undoubtedly made a significant impact in the field, a realization of the originally sought symmetric adiabatic passage in non-Hermitian systems with EPs has since been elusive. In this work, we bridge this gap and theoretically demonstrate that adiabaticity, and therefore a symmetric state transfer, is achievable when dynamically winding around an EP. This becomes feasible by specifically choosing a trajectory in the system parameter space along which the corresponding evolution operator attains a real spectrum. Our findings, thus, offer a promise for advancing various wave manipulation protocols in both quantum and classical domains.
format Preprint
id arxiv_https___arxiv_org_abs_2402_15298
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Restoring Adiabatic State Transfer in Time-Modulated Non-Hermitian Systems
Arkhipov, Ievgen I.
Minganti, Fabrizio
Miranowicz, Adam
Özdemir, Şahin K.
Nori, Franco
Quantum Physics
Optics
Non-Hermitian systems have attracted much interest in recent decades, driven partly by the existence of exotic spectral singularities, known as exceptional points (EPs), where the dimensionality of the system evolution operator is reduced. Among various intriguing applications, the discovery of EPs has suggested the potential for implementing a symmetric mode switch, when encircling them in a system parameter space. However, subsequent theoretical and experimental works have revealed that {\it dynamical} encirclement of EPs invariably results in asymmetric mode conversion; namely, the mode switching depends only on the winding direction but not on the initial state. This chirality arises from the failure of adiabaticity due to the complex spectrum of non-Hermitian systems. Although the chirality revealed has undoubtedly made a significant impact in the field, a realization of the originally sought symmetric adiabatic passage in non-Hermitian systems with EPs has since been elusive. In this work, we bridge this gap and theoretically demonstrate that adiabaticity, and therefore a symmetric state transfer, is achievable when dynamically winding around an EP. This becomes feasible by specifically choosing a trajectory in the system parameter space along which the corresponding evolution operator attains a real spectrum. Our findings, thus, offer a promise for advancing various wave manipulation protocols in both quantum and classical domains.
title Restoring Adiabatic State Transfer in Time-Modulated Non-Hermitian Systems
topic Quantum Physics
Optics
url https://arxiv.org/abs/2402.15298