• DocumentCode
    3715773
  • Title

    Decentralized coherent quantum control design for translation invariant linear quantum stochastic networks with direct coupling

  • Author

    Arash Kh. Sichani;Igor G. Vladimirov;Ian R. Petersen

  • Author_Institution
    UNSW Canberra, ACT 2600, Australia
  • fYear
    2015
  • Firstpage
    312
  • Lastpage
    317
  • Abstract
    This paper is concerned with coherent quantum control design for translation invariant networks of identical quantum stochastic systems subjected to external quantum noise. The network is modelled as an open quantum harmonic oscillator and is governed by a set of linear quantum stochastic differential equations. The dynamic variables of this quantum plant satisfy the canonical commutation relations. Similar large-scale systems can be found, for example, in quantum metamaterials and optical lattices. The problem under consideration is to design a stabilizing decentralized coherent quantum controller in the form of another translation invariant quantum system, directly coupled to the plant, so as to minimize a weighted mean square functional of the dynamic variables of the interconnected networks. We consider this problem in the thermodynamic limit of infinite network size and present first-order necessary conditions for optimality of the controller.
  • Keywords
    "Couplings","Symmetric matrices","Australia","Stochastic systems","Harmonic analysis","Oscillators","Mathematical model"
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (AUCC), 2015 5th Australian
  • Type

    conf

  • Filename
    7361954