화학공학소재연구정보센터
IEEE Transactions on Automatic Control, Vol.53, No.3, 775-779, 2008
Flatness-based control of a single qubit gate
This work considers the open-loop control problem of steering a two-level quantum system from any initial to any final condition. The model of this system evolves on the state space X = SU(2), having two inputs that correspond to the complex amplitude of a resonant laser field. A symmetry preserving flat output is constructed using a fully geometric construction and quaternion computations. Simulation results of this flatness-based open-loop control are provided.