Nonradiant multiphoton states in quantum ring oligomers

Fuente: arXiv
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Main Authors: Ustimenko, Nikita, Kornovan, Danil, Volkov, Ilya, Sheremet, Alexandra, Savelev, Roman, Petrov, Mihail
Format: Preprint
Published: 2023
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author Ustimenko, Nikita
Kornovan, Danil
Volkov, Ilya
Sheremet, Alexandra
Savelev, Roman
Petrov, Mihail
author_facet Ustimenko, Nikita
Kornovan, Danil
Volkov, Ilya
Sheremet, Alexandra
Savelev, Roman
Petrov, Mihail
contents Arrays of coupled dipole emitters support collective single- and multiphoton states that can preserve quantum excitations. One of the crucial characteristics of these states is the lifetime, which is fundamentally limited due to spontaneous emission. Here, we present a mechanism of the external coupling of two states via the radiation continuum, which allows for an increase in the lifetime of both single and double excitations. As an illustrative example, we consider a ringlike ensemble of quantum emitters, demonstrating that upon slight optimization of the structure geometry, one can increase the lifetime of singly and doubly excited states with nonzero orbital momentum by several orders of magnitude. The proposed mechanism of multiphoton excitation lifetime control has a universal nature and might be applied to a wide class of open quantum systems and quantum ensembles besides the particular geometry considered in this paper.
format Preprint
id arxiv_https___arxiv_org_abs_2309_14461
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Nonradiant multiphoton states in quantum ring oligomers
Ustimenko, Nikita
Kornovan, Danil
Volkov, Ilya
Sheremet, Alexandra
Savelev, Roman
Petrov, Mihail
Quantum Physics
Arrays of coupled dipole emitters support collective single- and multiphoton states that can preserve quantum excitations. One of the crucial characteristics of these states is the lifetime, which is fundamentally limited due to spontaneous emission. Here, we present a mechanism of the external coupling of two states via the radiation continuum, which allows for an increase in the lifetime of both single and double excitations. As an illustrative example, we consider a ringlike ensemble of quantum emitters, demonstrating that upon slight optimization of the structure geometry, one can increase the lifetime of singly and doubly excited states with nonzero orbital momentum by several orders of magnitude. The proposed mechanism of multiphoton excitation lifetime control has a universal nature and might be applied to a wide class of open quantum systems and quantum ensembles besides the particular geometry considered in this paper.
title Nonradiant multiphoton states in quantum ring oligomers
topic Quantum Physics
url https://arxiv.org/abs/2309.14461