DocumentCode :
843723
Title :
Transfer function approach to quantum control-part I: Dynamics of quantum feedback systems
Author :
Yanagisawa, Masahiro ; Kimura, Hidenori
Author_Institution :
Dept. of Complexity Sci., The Univ. of Tokyo, Japan
Volume :
48
Issue :
12
fYear :
2003
Firstpage :
2107
Lastpage :
2120
Abstract :
This paper gives a unified approach to feedback control theory of quantum mechanical systems of bosonic modes described by noncommutative operators. A quantum optical closed-loop, including a plant and controller, is developed and its fundamental structural properties are analyzed extensively from a purely quantum mechanical point of view, in order to facilitate the use of control theory in microscopic world described by quantum theory. In particular, an input-output description of quantum mechanical systems which is essential in describing the behavior of the feedback systems is fully formulated and developed. This would then provide a powerful tool for quantum control and pave an avenue that connects control theory to quantum dynamics. This paper is divided into two parts. The first part is devoted to the basic formulation of quantum feedback control via quantum communication and local operations on an optical device, cavity, that can be regarded as a unit of quantum dynamics of bosonic modes. The formulation introduced in this paper presents the feature intrinsic in quantum feedback systems based on quantum stochastic differential equations. The input-output description provides a basis for developing quantum feedback control through the transfer function representation of quantum feedback systems. In the follow-up paper, the quantum mechanical representation of feedback is further elaborated to yield the control theoretical representation of fundamental notions of quantum theory, uncertainty principle, e.g., and some applications are presented.
Keywords :
closed loop systems; differential equations; discrete time systems; feedback; quantum theory; stochastic processes; transfer functions; bosonic modes; cascade connection; feedback control theory; intrinsic feature; noncommutative operators; quantum control; quantum feedback system dynamics; quantum mechanical system; quantum optical closed-loop; quantum stochastic differential equations; quantum theory; transfer function; uncertainty principle; Control systems; Control theory; Feedback control; Mechanical factors; Mechanical systems; Optical control; Optical feedback; Optical microscopy; Quantum mechanics; Transfer functions;
fLanguage :
English
Journal_Title :
Automatic Control, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9286
Type :
jour
DOI :
10.1109/TAC.2003.820063
Filename :
1254080
Link To Document :
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