High purity two-dimensional levitated mechanical oscillator

Fuente: arXiv
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Hauptverfasser: Deplano, Q., Pontin, A., Ranfagni, A., Marino, F., Marin, F.
Format: Preprint
Veröffentlicht: 2024
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author Deplano, Q.
Pontin, A.
Ranfagni, A.
Marino, F.
Marin, F.
author_facet Deplano, Q.
Pontin, A.
Ranfagni, A.
Marino, F.
Marin, F.
contents In recent years, levitated optomechanics has delivered on the promise of reaching the motional quantum ground state. An important next milestone of the field would be the generation of mechanical entanglement. An ideal candidate is the two-dimensional motion in the polarization plane of an optical tweezer inside an optical cavity, where optical and mechanical modes are coupled via coherent scattering. Necessary conditions towards this achievement are two-dimensional ground state cooling along with substantial spectral overlap between the two modes. The latter condition is required to generate the necessary correlations, but unfortunately, it hinders efficient cooling thus narrowing the useful parameter space. In this work, we report the achievement of a high purity two-dimensional state in a regime where the strong optomechanical coupling induces the desired spectral superposition between oscillations in different directions, as reflected in the non-trivial spectral shape of the detected cavity field. As a result, significant correlations consistently arise between any pair of orthogonal directions, preventing the motion from being reduced to two independent one-dimensional oscillators and leading to higher purity compared to that scenario. Our system serves as an excellent platform for realizing continuous variable entanglement in two-dimensional motion.
format Preprint
id arxiv_https___arxiv_org_abs_2409_04863
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle High purity two-dimensional levitated mechanical oscillator
Deplano, Q.
Pontin, A.
Ranfagni, A.
Marino, F.
Marin, F.
Quantum Physics
In recent years, levitated optomechanics has delivered on the promise of reaching the motional quantum ground state. An important next milestone of the field would be the generation of mechanical entanglement. An ideal candidate is the two-dimensional motion in the polarization plane of an optical tweezer inside an optical cavity, where optical and mechanical modes are coupled via coherent scattering. Necessary conditions towards this achievement are two-dimensional ground state cooling along with substantial spectral overlap between the two modes. The latter condition is required to generate the necessary correlations, but unfortunately, it hinders efficient cooling thus narrowing the useful parameter space. In this work, we report the achievement of a high purity two-dimensional state in a regime where the strong optomechanical coupling induces the desired spectral superposition between oscillations in different directions, as reflected in the non-trivial spectral shape of the detected cavity field. As a result, significant correlations consistently arise between any pair of orthogonal directions, preventing the motion from being reduced to two independent one-dimensional oscillators and leading to higher purity compared to that scenario. Our system serves as an excellent platform for realizing continuous variable entanglement in two-dimensional motion.
title High purity two-dimensional levitated mechanical oscillator
topic Quantum Physics
url https://arxiv.org/abs/2409.04863