Observation of Measurement-Induced Entanglement and Quantum Trajectories of Remote Superconducting Qubits (original) (raw)

2014, Physical Review Letters

The creation of a quantum network requires the distribution of coherent information across macroscopic distances. We demonstrate the entanglement of two superconducting qubits, separated by more than a meter of coaxial cable, by designing a joint measurement that probabilistically projects onto an entangled state. By using a continuous measurement scheme, we are further able to observe single quantum trajectories of the joint two-qubit state, confirming the validity of the quantum Bayesian formalism for a cascaded system. Our results allow us to resolve the dynamics of continuous projection onto the entangled manifold, in quantitative agreement with theory. arXiv:1402.1868v2 [cond-mat.mes-hall]

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