Nanomechanically Induced Transparency

Fuente: arXiv
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Autori principali: Diniz, E. C., Neto, O. P. de Sá
Natura: Preprint
Pubblicazione: 2024
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author Diniz, E. C.
Neto, O. P. de Sá
author_facet Diniz, E. C.
Neto, O. P. de Sá
contents In this paper, we investigate a nanomechanically induced transparency (NIT) effects that arises from the coupling of a nanoelectromechanical system and a trapped ion. By confining the ion in mesoscopic traps and capacitively coupling it with a nanoelectromechanical system suspended as electrodes, the research is intricately focussed on the implications of including the ion's degrees of freedom. The Lamb--Dicke approximation is crucial to understanding the effects of phonon exchange with electronic qubits and revealing transparency phenomena in this unique coupling. The results underline the importance of the Lamb--Dicke approximation in modelling the effects of transparency windows in nanoelectromechanical systems.
format Preprint
id arxiv_https___arxiv_org_abs_2402_00948
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Nanomechanically Induced Transparency
Diniz, E. C.
Neto, O. P. de Sá
Information Theory
Quantum Physics
In this paper, we investigate a nanomechanically induced transparency (NIT) effects that arises from the coupling of a nanoelectromechanical system and a trapped ion. By confining the ion in mesoscopic traps and capacitively coupling it with a nanoelectromechanical system suspended as electrodes, the research is intricately focussed on the implications of including the ion's degrees of freedom. The Lamb--Dicke approximation is crucial to understanding the effects of phonon exchange with electronic qubits and revealing transparency phenomena in this unique coupling. The results underline the importance of the Lamb--Dicke approximation in modelling the effects of transparency windows in nanoelectromechanical systems.
title Nanomechanically Induced Transparency
topic Information Theory
Quantum Physics
url https://arxiv.org/abs/2402.00948