4.6 Review

Linear quantum systems: A tutorial

期刊

ANNUAL REVIEWS IN CONTROL
卷 54, 期 -, 页码 274-294

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.arcontrol.2022.04.013

关键词

Quantum linear control systems; Quantum Kalman filter; Quantum Kalman canonical form; Quantum coherent feedback networks

资金

  1. Hong Kong Research Grant council (RGC) [15203619, 15208418]
  2. Shenzhen Fundamental Research Program, China [JCYJ20190813165207290]
  3. National Natural Science Foundation of China (NSFC) [6217023269, 62003111]
  4. CAS AMSS-PolyU Joint Laboratory of Applied Mathematics, China
  5. Natural Science Foundation of Guangdong Province [2022A1515010390]

向作者/读者索取更多资源

This tutorial provides a brief introduction to linear quantum control systems, covering various aspects such as mathematical models, control theory concepts, quantum Gaussian states, quantum Kalman filter, system response, and coherent feedback control. It encompasses important concepts and experimental applications related to quantum information science.
The purpose of this tutorial is to give a brief introduction to linear quantum control systems. The mathematical model of linear quantum control systems is presented first, then some fundamental control-theoretic notions such as stability, controllability and observability are given, which are closely related to several important concepts in quantum information science such as decoherence-free subsystems, quantum non-demolition variables, and back-action evasion measurements. After that, quantum Gaussian states are introduced, in particular, an information-theoretic uncertainty relation is presented which often gives a better bound for mixed Gaussian states than the well-known Heisenberg uncertainty relation. The quantum Kalman filter is presented for quantum linear systems, which is the quantum analogy of the Kalman filter for classical (namely, non-quantum-mechanical) linear systems. The quantum Kalman canonical decomposition for quantum linear systems is recorded, and its application is illustrated by means of a recent experiment. As single-and multi -photon states are useful resources in quantum information technology, the response of quantum linear systems to these types of input is presented. Finally, coherent feedback control of quantum linear systems is briefly introduced, and a recent experiment is used to demonstrate the effectiveness of quantum linear systems and networks theory.

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