Title :
Controllability of quantum harmonic oscillators
Author :
Mirrahimi, Mazyar ; Rouchon, Pierre
Author_Institution :
Centre Automatique et Syst.s, Ecole des Mines de Paris, France
fDate :
5/1/2004 12:00:00 AM
Abstract :
It is proven in a previous paper that any modal approximation of the one-dimensional quantum harmonic oscillator is controllable. We prove here that, contrary to such finite-dimensional approximations, the original infinite-dimensional system is not controllable: Its controllable part is of dimension 2 and corresponds to the dynamics of the average position. More generally, we prove that, for the quantum harmonic oscillator of any dimension, similar lacks of controllability occur whatever the number of control is: the controllable part still corresponds to the average position dynamics. We show, with the quantum particle in a moving quadratic potential, that some physically interesting motion planning questions can be however solved.
Keywords :
Schrodinger equation; controllability; nonlinear control systems; path planning; quantum theory; Schrodinger equation; motion planning; moving quadratic potential; nonlinear controllability; quantum particle; Acceleration; Algebra; Control systems; Controllability; Laplace equations; Oscillators; Schrodinger equation; Surface waves; Symmetric matrices; Nonlinear controllability; Schrödinger equation; quantum systems;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2004.825966