Single photon generation and non-locality of perfect W-state

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Abstract

We study the generation of a single photon perfect W-state. An important aspect of this perfect W-state is that it can be used for perfect teleportation and superdense coding, which are not achievable with maximally entangled W-state. Our scheme for generation involves entanglement between various path degrees of freedom of a single photon in a compact and weakly coupled integrated waveguide system, which can be fabricated precisely with a femtosecond laser direct writing technique. These platforms are interferometrically stable, scalable, less sensitive to decoherence and ensure a very low loss factor of 0.1dBcm-1 during photon propagation, and hence are ideal for generation of a perfect W-state. In addition to generation of the single photon perfect W-state, we study its non-local properties using the theory of local elements of reality.

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Swain, M., Rai, A., Selvan, M. K., & Panigrahi, P. K. (2020). Single photon generation and non-locality of perfect W-state. Journal of Optics (United Kingdom), 22(7). https://doi.org/10.1088/2040-8986/ab9512

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