Mirror-mediated ultralong-range atomic dipole-dipole interactions

Fuente: arXiv
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Autori principali: Furtak-Wells, Nicholas, Dawson, Benjamin, Mann, Thomas, Jose, Gin, Beige, Almut
Natura: Preprint
Pubblicazione: 2023
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author Furtak-Wells, Nicholas
Dawson, Benjamin
Mann, Thomas
Jose, Gin
Beige, Almut
author_facet Furtak-Wells, Nicholas
Dawson, Benjamin
Mann, Thomas
Jose, Gin
Beige, Almut
contents In three dimensions, dipole-dipole interactions which alter atomic level shifts and spontaneous decay rates only persist over distances comparable to the wavelength of the emitted light. In this paper we show that it is possible to significantly extend the range of these interactions with the help of a partially transparent asymmetric mirror interface. Suppose two two-level atoms are placed on opposite sides of the interface, each at the position of the mirror image of the other. In this case, their emitted light interferes almost exactly as it would when the atoms are right next to each other. Hence their dipole-dipole interaction assumes an additional maximum, even when the actual distance of the atoms is several orders of magnitude larger than the transition wavelength. Although the resulting ultralong-range interactions are in general relatively weak, we expect them to find applications in quantum technology, like non-invasive quantum sensing.
format Preprint
id arxiv_https___arxiv_org_abs_2305_18826
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Mirror-mediated ultralong-range atomic dipole-dipole interactions
Furtak-Wells, Nicholas
Dawson, Benjamin
Mann, Thomas
Jose, Gin
Beige, Almut
Quantum Physics
In three dimensions, dipole-dipole interactions which alter atomic level shifts and spontaneous decay rates only persist over distances comparable to the wavelength of the emitted light. In this paper we show that it is possible to significantly extend the range of these interactions with the help of a partially transparent asymmetric mirror interface. Suppose two two-level atoms are placed on opposite sides of the interface, each at the position of the mirror image of the other. In this case, their emitted light interferes almost exactly as it would when the atoms are right next to each other. Hence their dipole-dipole interaction assumes an additional maximum, even when the actual distance of the atoms is several orders of magnitude larger than the transition wavelength. Although the resulting ultralong-range interactions are in general relatively weak, we expect them to find applications in quantum technology, like non-invasive quantum sensing.
title Mirror-mediated ultralong-range atomic dipole-dipole interactions
topic Quantum Physics
url https://arxiv.org/abs/2305.18826