Classically calculating these entangledstates in even very simple molecules can become a nightmare of exponentially increasing complexity.
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The entangledstates were found to break the Clauser-Horne-Shimony-Holt (CHSH) Bell inequality by around 6 standard deviations.
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We investigate the special properties of cluster states, multipartite entangledstates, and superpositions of distinct macroscopic quantum states that can be identified by the network.