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Scalable multimode entanglement based on efficient squeezing of propagation eigenmodes

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arxiv 2005.07241 v2 pith:KJQ3SOTS submitted 2020-05-14 quant-ph physics.optics

Scalable multimode entanglement based on efficient squeezing of propagation eigenmodes

classification quant-ph physics.optics
keywords quantumentangledentanglementgenerationlargemultimodemultipartitepropagation
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Continuous-variable encoding of quantum information in the optical domain has recently yielded large temporal and spectral entangled states instrumental for quantum computing and quantum communication. We introduce a protocol for the generation of spatial multipartite entanglement based on phase-matching of a propagation eigenmode in a monolithic photonic device: the array of quadratic nonlinear waveguides. We theoretically demonstrate in the spontaneous parametric downconversion regime the generation of large multipartite entangled states useful for multimode quantum networks. Our protocol is remarkably simple and robust as it does not rely on specific values of coupling, nonlinearity or length of the sample.

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