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Creating atom-nanoparticle quantum superpositions

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arxiv 2005.12006 v2 pith:5OXQMIPS submitted 2020-05-25 quant-ph

Creating atom-nanoparticle quantum superpositions

classification quant-ph
keywords nanoparticlestateatomcoupledfieldmotionalquantumatom-nanoparticle
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A nanoscale object evidenced in a non-classical state of its centre of mass will hugely extend the boundaries of quantum mechanics. To obtain a practical scheme for the same, we exploit a hitherto unexplored coupled system: an atom and a nanoparticle coupled by an optical field. We show how to control the center-of-mass of a large $\sim500$nm nanoparticle using the internal state of the atom so as to create, as well as detect, nonclassical motional states of the nanoparticle. Specifically, we consider a setup based on a silica nanoparticle coupled to a Cesium atom and discuss a protocol for preparing and verifying a Schr\"{o}dinger-cat state of the nanoparticle that does no require cooling to the motional ground state. We show that the existence of the superposition can be revealed using the Earth's gravitational field using a method that is insensitive to the most common sources of decoherence and works for any initial state of the nanoparticle.

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