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We propose a method to prepare and verify spatial quantum superpositions of a nanometer-sized object separated by distances of the order of its size. This method provides unprecedented bounds for objective collapse models of the wave function by merging techniques and insights from cavity quantum optomechanics and matter-wave interferometry. An analysis and simulation of the experiment is performed taking into account standard sources of decoherence. We provide an operational parameter regime using present-day and planned technology.
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Physical Review Letters
University of Vienna
Max Planck Institute of Quantum Optics
Vienna Center for Quantum Science and Technology
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Romero‐Isart et al. (Thu,) studied this question.