DocumentCode :
3744177
Title :
Stabilization of photon-number states via single-photon corrections: A first convergence analysis under an ideal set-up
Author :
H. B. Silveira;P. S. Pereira da Silva;P. Rouchon
Author_Institution :
Departamento de Automaç
fYear :
2015
Firstpage :
7113
Lastpage :
7118
Abstract :
This paper presents a first mathematical convergence analysis of a Fock states feedback stabilization scheme via single-photon corrections. This measurement-based feedback has been developed and experimentally tested in 2012 by the cavity quantum electrodynamics group of Serge Haroche and Jean-Michel Raimond. Here, we consider the infinite-dimensional Markov model corresponding to the ideal set-up where detection errors and feedback delays have been disregarded. In this ideal context, we show that any goal Fock state can be stabilized by a Lyapunov-based feedback for any initial quantum state belonging to the dense subset of finite rank density operators with support in a finite photon-number sub-space. Closed-loop simulations illustrate the performance of the feedback law.
Keywords :
"Atomic measurements","Markov processes","Photonics","Convergence","Cavity resonators","Microwave measurement","Lyapunov methods"
Publisher :
ieee
Conference_Titel :
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type :
conf
DOI :
10.1109/CDC.2015.7403341
Filename :
7403341
Link To Document :
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