English

Joint quantum nondemolition measurements of qubits: beyond the mean-field theory

Quantum Physics 2010-11-16 v3

Abstract

We propose an approach to nondestructively detect NN qubits by measuring the transmissions of a dispersively-coupled cavity. By taking into account all the cavity-qubits quantum correlations (i.e., beyond the usual coarse-grained/mean-field approximations), it is revealed that for an unknown normalized NN-qubit state ψN>=k=02N1βkk>N|\psi_N>=\sum_{k=0}^{2^N-1}\beta_k|k>_N, each detected peak in the cavity transmitted spectra marks one of the basis states k>N|k>_N and the relative height of such a peak is related to the corresponding superposed-probability βk2|\beta_k|^2. Our results are able to unambiguously account for the intriguing multi-peak structures of the spectra observed in a very recent circuit-quantum-electrodynamics experiment [Phys. Rev. A {\bf 81}, 062325 (2010)] with two superconducting qubits.

Keywords

Cite

@article{arxiv.1005.2470,
  title  = {Joint quantum nondemolition measurements of qubits: beyond the mean-field theory},
  author = {L. F. Wei and J. S. Huang and X. L. Feng and Z. D. Wang and C. H. Oh},
  journal= {arXiv preprint arXiv:1005.2470},
  year   = {2010}
}

Comments

5 pages, 3 figures