arXiv · 1802.09712
Mapping a quantum walk by tuning the coupling coefficient
Abstract
We present a method to map the evolution of photonic random walks that is compatible with nonclassical input light. Our approach leverages a newly developed flexible waveguide platform to tune the jumping rate between spatial modes, allowing the observation of a range of evolution times in a chip of fixed length. In a proof-of-principle demonstration we reconstruct the evolution of photons through a uniform array of coupled waveguides by monitoring the end-face alone. This approach enables direct observation of mode occupancy at arbitrary resolution, extending the utility of photonic random walks for quantum simulations and related applications.
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Kian Fong Ng, Manuel J. L. F. Rodrigues, José Viana-Gomes, Alexander Ling, James A. Grieve. 2018-02-27. Mapping a quantum walk by tuning the coupling coefficient. https://arxiv.org/abs/1802.09712
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