DocumentCode
2852211
Title
Back and forth nudging for quantum state estimation by continuous weak measurement
Author
Leghtas, Zaki ; Mirrahimi, M. ; Rouchon, P.
Author_Institution
INRIA Paris-Rocquencourt Domaine de Voluceau, Le Chesnay, France
fYear
2011
fDate
June 29 2011-July 1 2011
Firstpage
4334
Lastpage
4339
Abstract
We propose to apply the Back and Forth Nudging (BFN) method used for geophysical data assimilations [1] to estimate the initial state of a quantum system. We consider a cloud of atoms interacting with a magnetic field while a single observable is being continuously measured over time using homodyne detection. The BFN method relies on designing an observer forward and backwards in time. The state of the BFN observer is continuously updated by the measured data and tends to converge to the system´s state. The proposed estimator seems to be globally asymptotically convergent when the system is observable. A detailed convergence proof and simulations are given in the 2-level case. An extension of the algorithm to the multilevel case is also presented.
Keywords
estimation theory; quantum computing; BFN; back and forth nudging; continuous weak measurement; geophysical data assimilations; magnetic field; quantum state estimation; Convergence; Geophysical measurements; Noise measurement; Observers; Protocols; Robustness; Time measurement;
fLanguage
English
Publisher
ieee
Conference_Titel
American Control Conference (ACC), 2011
Conference_Location
San Francisco, CA
ISSN
0743-1619
Print_ISBN
978-1-4577-0080-4
Type
conf
DOI
10.1109/ACC.2011.5991108
Filename
5991108
Link To Document