Title :
A stochastic Lyapunov feedback technique for propagator generation of quantum systems on U(n)
Author :
Silveira, H.B. ; Pereira da Silva, Paulo S. ; Rouchon, Pierre
Author_Institution :
Dept. of Autom. & Syst. (DAS), Fed. Univ. of Santa Catarina (UFSC), Florianopolis, Brazil
Abstract :
This work treats the problem of generating any desired goal propagator for a driftless quantum system that evolves on the unitary group U(n). The physical relevance of such control problem is the realization of arbitrary quantum gates in quantum computers. Assuming only the controllability of the system, the paper constructs explicit stochastic control laws that assure global asymptotic convergence of the propagator of the system towards the goal propagator. The purpose of introducing a stochastic behaviour in the controls is to speed up convergence. The control strategy can be rigorously proved based on Lyapunov feedback and stochastic techniques. The controls laws rely on a reference trajectory that crosses the desired goal propagator in a time-periodic fashion and such that its corresponding linearised system generates the Lie algebra u(n). Their existence is ensured by the ReturnMethod of Coron, and standard Fourier series results allows them to be explicitly constructed.
Keywords :
Fourier series; Lie algebras; Lyapunov methods; controllability; feedback; stochastic processes; stochastic systems; trajectory control; Lie algebra; Return Method of Coron; arbitrary quantum gates; control problem; driftless quantum system; goal propagator; linearised system; propagator generation; quantum computers; quantum systems; reference trajectory; standard Fourier series; stochastic Lyapunov feedback technique; stochastic behaviour; stochastic control laws; system controllability; time-periodic fashion; unitary group; Algebra; Controllability; Quantum computing; Quantum mechanics; Standards; Trajectory;
Conference_Titel :
Control Conference (ECC), 2013 European
Conference_Location :
Zurich