Authors
Martin Ringbauer, Till J Weinhold, LA Howard, AG White, MR Vanner
Publication date
2018/5/18
Journal
New Journal of Physics
Volume
20
Issue
5
Pages
053042
Publisher
IOP Publishing
Description
Exploring the quantum behaviour of macroscopic objects provides an intriguing avenue to study the foundations of physics and to develop a suite of quantum-enhanced technologies. One prominent path of study is provided by quantum optomechanics which utilizes the tools of quantum optics to control the motion of macroscopic mechanical resonators. Despite excellent recent progress, the preparation of mechanical quantum superposition states remains outstanding due to weak coupling and thermal decoherence. Here we present a novel optomechanical scheme that significantly relaxes these requirements allowing the preparation of quantum superposition states of motion of a mechanical resonator by exploiting the nonlinearity of multi-photon quantum measurements. Our method is capable of generating non-classical mechanical states without the need for strong singlephoton coupling, is resilient against …
Total citations
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Scholar articles
M Ringbauer, TJ Weinhold, LA Howard, AG White… - New Journal of Physics, 2018