Optimal control of the local electromagnetic response of nanostructured materials: optimal detectors and quantum disguises
arXiv:0902.3424 · doi:10.1063/1.3159879
Abstract
We consider the problem of optimization of an effective trapping potential in a nanostructure with a quasi-one-dimensional geometry. The optimization is performed to achieve certain target optical properties of the system. We formulate and solve the optimization problem for a nanostructure that serves either as a single molecule detector or as a "quantum disguise" for a single molecule.
References in corpus (3)
Cited by in corpus (3)
- Control of quantum phenomena: Past, present, and future
- Optimal control of interacting quantum systems based on the first-order Magnus approximation: Application to multiple dipole-dipole coupled molecular rotors
- Strategies for optimal design for electrostatic energy storage in quantum multiwell heterostructures