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March 26, 2014Physical Review Letters482 citationsOpen Access

Experimental Realization of Multipartite Entanglement of 60 Modes of a Quantum Optical Frequency Comb

MCMoran ChenNMNicolas C. MenicucciOPOlivier Pfister

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Abstract

We report the experimental realization and characterization of one 60-mode copy and of two 30-mode copies of a dual-rail quantum-wire cluster state in the quantum optical frequency comb of a bimodally pumped optical parametric oscillator. This is the largest entangled system ever created whose subsystems are all available simultaneously. The entanglement proceeds from the coherent concatenation of a multitude of Einstein, Podolsky, and Rosen pairs by a single beam splitter, a procedure which is also a building block for the realization of hypercubic-lattice cluster states for universal quantum computing.

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Chen et al. (2014) studied this question.

synapsesocial.com/papers/69dc337dd50c49528a9f552ahttps://doi.org/10.1103/physrevlett.112.120505
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