arXiv · quant-ph/0212006
Quantum control and the Strocchi map
Abstract
Identifying the real and imaginary parts of wave functions with coordinates and momenta, quantum evolution may be mapped onto a classical Hamiltonian system. In addition to the symplectic form, quantum mechanics also has a positive-definite real inner product which provides a geometrical interpretation of the measurement process. Together they endow the quantum Hilbert space with the structure of a Käller manifold. Quantum control is discussed in this setting. Quantum time-evolution corresponds to smooth Hamiltonian dynamics and measurements to jumps in the phase space. This adds additional power to quantum control, non unitarily controllable systems becoming controllable by ``measurement plus evolution''. A picture of quantum evolution as Hamiltonian dynamics in a classical-like phase-space is the appropriate setting to carry over techniques from classical to quantum control. This is illustrated by a discussion of optimal control and sliding mode techniques.
Explore related subjects
Keep this discovery
R. Vilela Mendes, V. I. Man'ko. 2002-12-01. Quantum control and the Strocchi map. https://doi.org/10.1103/physreva.67.053404
Cite the original work for its findings. Save a collection to share your selection of sources.