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Dynamical Casimir Effect for Gaussian Boson Sampling

Published 25 Oct 2016 in quant-ph, cond-mat.mes-hall, and cond-mat.supr-con | (1610.07777v2)

Abstract: We show that the Dynamical Casimir Effect (DCE), realized on two multimode coplanar waveguide resonators, implements a gaussian boson sampler (GBS). The appropriate choice of the mirror acceleration that couples both resonators translates into the desired initial gaussian state and many-boson interference in a boson sampling network. In particular, we show that the proposed quantum simulator naturally performs a classically hard task, known as scattershot boson sampling. Our result unveils an unprecedented computational power of DCE, and paves the way for using DCE as a resource for quantum simulation.

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