Title :
Feedback Stabilization of Isospectral Control Systems on Complex Flag Manifolds: Application to Quantum Ensembles
Author :
Altafini, Claudio
Author_Institution :
Int. Sch. for Adv. Studies (SISSA-ISAS), Trieste
Abstract :
The convex set of density operators of an N-level quantum mechanical system foliated as a complex flag manifold, where each leaf is identified with the adjoint unitary orbit of the eigenvalues of a density matrix. For an isospectral bilinear control system evolving on such an orbit, the state feedback stabilization problem admits a natural Lyapunov-based time-varying feedback design. A global description of the domain of attraction of the closed-loop system can be provided based on a ldquoroot-spacerdquo-like structure of the cone of density operators. The converging conditions are time independent but depend on the topology of the flag manifold: it is shown that the closed loop must have a number of equilibria at least equal to the Euler characteristic of the manifold, thus imposing topological obstructions to global stabilizability.
Keywords :
Lyapunov methods; bilinear systems; closed loop systems; eigenvalues and eigenfunctions; large-scale systems; matrix algebra; set theory; stability; state feedback; time-varying systems; topology; Euler characteristic; Lyapunov-based time-varying feedback design; adjoint unitary orbit; closed-loop system; complex flag manifold; density matrix; density operator convex set; eigenvalues; flag manifold topology; isospectral bilinear control system; isospectral control system; quantum ensemble; root-space-like structure; state feedback stabilization problem; topological obstructions; Control systems; Convergence; Density measurement; Eigenvalues and eigenfunctions; Extraterrestrial measurements; Mechanical systems; Open loop systems; Quantum mechanics; State feedback; Time varying systems; Bilinear control systems; convergence analysis; feedback stabilization; quantum control;
Journal_Title :
Automatic Control, IEEE Transactions on
DOI :
10.1109/TAC.2007.908306