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Recovery of local entanglement in self-healing vector vortex Bessel beams

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arxiv 1805.08179 v1 pith:67DV5DEQ submitted 2018-05-21 physics.optics

Recovery of local entanglement in self-healing vector vortex Bessel beams

classification physics.optics
keywords non-separabilitydegreesentanglementfreedomlocalself-healingdegreeresults
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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One of the most captivating properties of diffraction-free optical fields is their ability to reconstruct upon propagation in the presence of an obstacle both, classically and in the quantum regime. Here we demonstrate that the local entanglement, or non-separability, between the spatial and polarisation degrees of freedom also experience self-healing. We measured and quantified the degree of non-separability between the two degrees of freedom when propagating behind various obstructions, which were generated digitally. Experimental results show that even though the degree of non-separability reduces after the obstruction, it recovers to its maximum value within the classical self-healing distance. To confirm our findings, we performed a Clauser-Horne-Shimony-Holt Bell-like inequality measurement, proving the self-reconstruction of non-separability. These results indicate that local entanglement between internal degrees of freedom of a photon, can be recovered by suitable choice of the enveloping wave function.

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