Measuring Entanglement in a Photonic Embedding Quantum Simulator
Abstract
Measuring entanglement is a demanding task that usually requires full tomography of a quantum system, involving a number of observables that grows exponentially with the number of parties. Recently, it was suggested that adding a single ancillary qubit would allow for the efficient measurement of concurrence, and indeed any entanglement monotone associated to antilinear operations. Here, we report on the experimental implementation of such a device---an embedding quantum simulator---in photonics, encoding the entangling dynamics of a bipartite system into a tripartite one. We show that bipartite concurrence can be efficiently extracted from the measurement of merely two observables, instead of fifteen, without full tomographic information.
Cite
@article{arxiv.1506.05108,
title = {Measuring Entanglement in a Photonic Embedding Quantum Simulator},
author = {Juan C. Loredo and Marcelo P. Almeida and Roberto Di Candia and Julen S. Pedernales and Jorge Casanova and Enrique Solano and Andrew G. White},
journal= {arXiv preprint arXiv:1506.05108},
year = {2016}
}
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