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Trapped Ion Quantum Computing

Levitated optomechanics with a fiber Fabry-Perot interferometer

arXiv
Authors: Antonio Pontin, Lauren S. Mourounas, Andrew A. Geraci, Peter F. Barker

Year

2017

Paper ID

44877

Status

Preprint

Abstract Read

~2 min

Abstract Words

108

Citations

N/A

Abstract

In recent years quantum phenomena have been experimentally demonstrated on variety of optomechanical systems ranging from micro-oscillators to photonic crystals. Since single photon couplings are quite small, most experimental approaches rely on the realization of high finesse Fabry-Perot cavities in order to enhance the effective coupling. Here we show that by exploiting a, long path, low finesse fiber Fabry-Perot interferometer ground state cooling can be achieved. We model a 100 m long cavity with a finesse of 10 and analyze the impact of additional noise sources arising from the fiber. As a mechanical oscillator we consider a levitated microdisk but the same approach could be applied to other optomechanical systems.

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