Cooperative Effects in Thin Dielectric Layers: Long-Range Dicke Superradiance

Fuente: arXiv
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Hauptverfasser: Kundu, Ankit, Trivedi, Rahul, Javadi, Alisa, Alaeian, Hadiseh
Format: Preprint
Veröffentlicht: 2025
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author Kundu, Ankit
Trivedi, Rahul
Javadi, Alisa
Alaeian, Hadiseh
author_facet Kundu, Ankit
Trivedi, Rahul
Javadi, Alisa
Alaeian, Hadiseh
contents The realization and control of collective effects in quantum emitter ensembles have predominantly focused on small, ordered systems, leaving their extension to larger, more complex configurations as a significant challenge. Quantum photonic platforms, with their engineered Green's functions and integration of advanced solid-state quantum emitters, provide opportunities to explore new regimes of light-matter interaction beyond the scope of atomic systems. In this study, we examine the interaction of quantum emitters embedded within a thin dielectric layer. Our results reveal that the guided optical modes of the dielectric layer mediate extended-range interactions between emitters, enabling both total and directional superradiance in arrays spanning several wavelengths. Additionally, the extended interaction range facilitated by the dielectric layer supports Dicke superradiance in regimes where collective effects cannot be obtained in a homogeneous environment. This work uncovers a distinctive interplay between environmental dimensionality and collective quantum dynamics, paving the way for exploring novel many-body quantum optical phenomena in engineered photonic environments.
format Preprint
id arxiv_https___arxiv_org_abs_2501_14913
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Cooperative Effects in Thin Dielectric Layers: Long-Range Dicke Superradiance
Kundu, Ankit
Trivedi, Rahul
Javadi, Alisa
Alaeian, Hadiseh
Quantum Physics
Atomic Physics
The realization and control of collective effects in quantum emitter ensembles have predominantly focused on small, ordered systems, leaving their extension to larger, more complex configurations as a significant challenge. Quantum photonic platforms, with their engineered Green's functions and integration of advanced solid-state quantum emitters, provide opportunities to explore new regimes of light-matter interaction beyond the scope of atomic systems. In this study, we examine the interaction of quantum emitters embedded within a thin dielectric layer. Our results reveal that the guided optical modes of the dielectric layer mediate extended-range interactions between emitters, enabling both total and directional superradiance in arrays spanning several wavelengths. Additionally, the extended interaction range facilitated by the dielectric layer supports Dicke superradiance in regimes where collective effects cannot be obtained in a homogeneous environment. This work uncovers a distinctive interplay between environmental dimensionality and collective quantum dynamics, paving the way for exploring novel many-body quantum optical phenomena in engineered photonic environments.
title Cooperative Effects in Thin Dielectric Layers: Long-Range Dicke Superradiance
topic Quantum Physics
Atomic Physics
url https://arxiv.org/abs/2501.14913