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Superconducting Qubits Photonic Quantum Computing

Active demultiplexing of single-photons from a solid-state source

arXiv
Authors: F. Lenzini, B. Haylock, J. C. Loredo, R. A. Abrahao, N. A. Zakaria, S. Kasture, I. Sagnes, A. Lemaitre, H. -P. Phan, D. V. Dao, P. Senellart, M. P. Almeida, A. G. White, M. Lobino

Year

2016

Paper ID

42522

Status

Preprint

Abstract Read

~2 min

Abstract Words

105

Citations

N/A

Abstract

A scheme for active temporal-to-spatial demultiplexing of single-photons generated by a solid-state source is introduced. The scheme scales quasi-polynomially with photon number, providing a viable technological path for routing n photons in the one temporal stream from a single emitter to n different spatial modes. The active demultiplexing is demonstrated using a state-of-the-art photon source---a quantum-dot deterministically coupled to a micropillar cavity---and a custom-built demultiplexer---a network of electro-optically reconfigurable waveguides monolithically integrated in a lithium niobate chip. The measured demultiplexer performance can enable a six-photon rate three orders of magnitude higher than the equivalent heralded SPDC source, providing a platform for intermediate quantum computation protocols.

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