DocumentCode
3744278
Title
Coupling Lyapunov functions approach for quantum control
Author
Thanh Long Vu;Shuzhi Sam Ge;Tong Heng Lee
Author_Institution
Department of Mechanical Engineering, Massachusetts Institute of Technology, Cambridge, 02139 USA
fYear
2015
Firstpage
7749
Lastpage
7754
Abstract
Quantum control concerns driving quantum systems to the desired properties or states. This objective is hindered by the non-deterministic nature of quantum systems and the symmetric topology of the quantum state space. This paper introduces a coupling Lyapunov functions approach to counter for the stochastic nature of quantum measurements and break the symmetric topology of resulting filter state space. As an example, we then apply it to synthesize non-smooth control almost surely globally stabilizing the desired Bell state-the maximally entangled two-qubit state with various applications. It turns out that this approach enables the short time convergence of the system state, which is essential in the control of entanglement. More interestingly, its combination with the generalized concept of SWM (simultaneous weak measurement)-induced quantum state reduction allows us to deterministically generate the maximally entangled Bell state with little non-local effects. We use numerical illustration to validate the proposed scheme.
Keywords
"Lyapunov methods","Aerospace electronics","Couplings","Quantum entanglement","Feedback control","Topology","Atomic measurements"
Publisher
ieee
Conference_Titel
Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
Type
conf
DOI
10.1109/CDC.2015.7403444
Filename
7403444
Link To Document