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Stabilization of a delayed quantum system: The photon box case-study

  • Mines ParisTech

Research output: Contribution to journalArticlepeer-review

Abstract

A feedback scheme, stabilizing an arbitrary photon-number state in a microwave cavity, is analyzed. The quantum non-demolition measurement of the cavity state allows in open-loop a non-deterministic preparation of photon-number states. By the mean of a controlled classical field injection, this preparation process is made deterministic. The system evolves through a discrete-time Markov process and the feedback law relies on Lyapunov techniques. This feedback design compensates an unavoidable pure delay by a stochastic version of a Kalman-type predictor. After illustrating the efficiency of the proposed feedback law through simulations, the global closed-loop convergence is proved. It relies on tools from stochastic stability analysis. A brief study of the Lyapunov exponents of the linearized system around the target state gives a strong indication of the robustness of the method.

Original languageEnglish
Article number6189045
Pages (from-to)1918-1930
Number of pages13
JournalIEEE Transactions on Automatic Control
Volume57
Issue number8
DOIs
Publication statusPublished - 8 Aug 2012

Keywords

  • Delay systems
  • Lyapunov control
  • Markov chain
  • measurement-based feedback
  • quantum non-demolition (QND) measurement
  • quantum systems

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