A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime

We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave cavity, where the CPT serves as a charge tunable quantum inductor to facilitate ultra-strong coupling between photons in the cavity and a nano- to meso-scale mechanical resonator. The mechanical reso...

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Main Authors: Rimberg, A.J., Blencowe, M.P., Armour, A.D., Nation, P.D.
Format: Article
Published: IOP Publishing 2014
Online Access:https://eprints.nottingham.ac.uk/34872/
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author Rimberg, A.J.
Blencowe, M.P.
Armour, A.D.
Nation, P.D.
author_facet Rimberg, A.J.
Blencowe, M.P.
Armour, A.D.
Nation, P.D.
author_sort Rimberg, A.J.
building Nottingham Research Data Repository
collection Online Access
description We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave cavity, where the CPT serves as a charge tunable quantum inductor to facilitate ultra-strong coupling between photons in the cavity and a nano- to meso-scale mechanical resonator. The mechanical resonator is capacitively coupled to the CPT, such that mechanical displacements of the resonator cause a shift in the CPT inductance and hence the cavity's resonant frequency. The amplification provided by the CPT is sufficient for the zero point motion of the mechanical resonator alone to cause a significant change in the cavity resonance. Conversely, a single photon in the cavity causes a shift in the mechanical resonator position on the order of its zero point motion. As a result, the cavity-Cooper pair transistor coupled to a mechanical resonator will be able to access a regime in which single photons can affect single phonons and vice versa. Realizing this ultra strong coupling regime will facilitate the creation of non-classical states of the mechanical resonator, as well as the means to accurately characterize such states by measuring the cavity photon field.
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spelling nottingham-348722020-05-04T16:48:13Z https://eprints.nottingham.ac.uk/34872/ A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime Rimberg, A.J. Blencowe, M.P. Armour, A.D. Nation, P.D. We propose a scheme involving a Cooper pair transistor (CPT) embedded in a superconducting microwave cavity, where the CPT serves as a charge tunable quantum inductor to facilitate ultra-strong coupling between photons in the cavity and a nano- to meso-scale mechanical resonator. The mechanical resonator is capacitively coupled to the CPT, such that mechanical displacements of the resonator cause a shift in the CPT inductance and hence the cavity's resonant frequency. The amplification provided by the CPT is sufficient for the zero point motion of the mechanical resonator alone to cause a significant change in the cavity resonance. Conversely, a single photon in the cavity causes a shift in the mechanical resonator position on the order of its zero point motion. As a result, the cavity-Cooper pair transistor coupled to a mechanical resonator will be able to access a regime in which single photons can affect single phonons and vice versa. Realizing this ultra strong coupling regime will facilitate the creation of non-classical states of the mechanical resonator, as well as the means to accurately characterize such states by measuring the cavity photon field. IOP Publishing 2014-05-09 Article PeerReviewed Rimberg, A.J., Blencowe, M.P., Armour, A.D. and Nation, P.D. (2014) A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime. New Journal of Physics, 16 . 055008/1-055008/16. ISSN 1367-2630 http://iopscience.iop.org/article/10.1088/1367-2630/16/5/055008/meta;jsessionid=3AA8B8D7EB0704637C0A6EE5EF1D7B6F.c1.iopscience.cld.iop.org doi:10.1088/1367-2630/16/5/055008 doi:10.1088/1367-2630/16/5/055008
spellingShingle Rimberg, A.J.
Blencowe, M.P.
Armour, A.D.
Nation, P.D.
A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title_full A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title_fullStr A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title_full_unstemmed A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title_short A cavity-Cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
title_sort cavity-cooper pair transistor scheme for investigating quantum optomechanics in the ultrastrong coupling regime
url https://eprints.nottingham.ac.uk/34872/
https://eprints.nottingham.ac.uk/34872/
https://eprints.nottingham.ac.uk/34872/