DocumentCode
3428472
Title
Approximate stabilization of an infinite dimensional quantum stochastic system
Author
Somaraju, Ram ; Mirrahimi, Mazyar ; Rouchon, Pierre
Author_Institution
INRIA, Rocquencourt, France
fYear
2011
fDate
12-15 Dec. 2011
Firstpage
6248
Lastpage
6253
Abstract
We propose a feedback scheme for preparation of photon number states in a microwave cavity. Quantum Non-Demolition (QND) measurements of the cavity field and a control signal consisting of a microwave pulse injected into the cavity are used to drive the system towards a desired target photon number state. Unlike previous work, we do not use the Galerkin approximation of truncating the infinite-dimensional system Hilbert space into a finite-dimensional subspace. We use an (unbounded) strict Lyapunov function and prove that a feedback scheme that minimizes the expectation value of the Lyapunov function at each time step stabilizes the system at the desired photon number state with (a pre-specified) arbitrarily high probability. Simulations of this scheme demonstrate that we improve the performance of the controller by reducing “leakage” to high photon numbers.
Keywords
Hilbert spaces; Lyapunov methods; approximation theory; discrete systems; feedback; probability; stability; stochastic systems; Galerkin approximation; QND measurement; approximate stabilization; feedback scheme; finite-dimensional subspace; infinite dimensional quantum stochastic system; infinite-dimensional system Hilbert space; microwave cavity; photon number state; probability; quantum nondemolition measurement; unbounded strict Lyapunov function; Approximation methods; Atomic measurements; Cavity resonators; Hilbert space; Lyapunov methods; Markov processes; Photonics;
fLanguage
English
Publisher
ieee
Conference_Titel
Decision and Control and European Control Conference (CDC-ECC), 2011 50th IEEE Conference on
Conference_Location
Orlando, FL
ISSN
0743-1546
Print_ISBN
978-1-61284-800-6
Electronic_ISBN
0743-1546
Type
conf
DOI
10.1109/CDC.2011.6160560
Filename
6160560
Link To Document