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Cavity-Mediated Entanglement Generation Via Landau-Zener Interferometry

Mesoscale and Nanoscale Physics 2014-01-31 v1 Quantum Physics

Abstract

We demonstrate quantum control and entanglement generation using a Landau-Zener beam splitter formed by coupling two transmon qubits to a superconducting cavity. Single passage through the cavity-mediated qubit-qubit avoided crossing provides a direct test of the Landau-Zener transition formula. Consecutive sweeps result in Landau-Zener-Stuckelberg interference patterns, with a visibility that can be sensitively tuned by adjusting the level velocity through both the non-adiabatic and adiabatic regimes. Two-qubit state tomography indicates that a Bell state can be generated via a single passage, with a fidelity of 78% limited by qubit relaxation.

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Cite

@article{arxiv.1212.0726,
  title  = {Cavity-Mediated Entanglement Generation Via Landau-Zener Interferometry},
  author = {C. M. Quintana and K. D. Petersson and L. W. McFaul and S. J. Srinivasan and A. A. Houck and J. R. Petta},
  journal= {arXiv preprint arXiv:1212.0726},
  year   = {2014}
}

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