Microwave realisation of a periodically driven system
arXiv:1302.1289 · doi:10.1088/1367-2630/15/8/083030
Abstract
A realisation of a periodically driven microwave system is presented. The principal element of the scheme is a variable capacity, i.e. a varicap, introduced as an element of the resonant circuit. Sideband structures corresponding to different driving signals, have been measured experimentally. In the linear regime we observed sideband structures with specific shapes. The main peculiarities of these shapes can be explained within a semiclassical approximation. A good agreement between experimental data and theoretical expectations has been found.
19 pages, 11 figures
References in corpus (6)
- Experimental Realization of Quantum-Resonance Ratchets
- Quantized Adiabatic Transport in Momentum Space
- Experimental Test of Universality of the Anderson Transition
- Long-lasting Exponential Spreading in Periodically Driven Quantum Systems
- On the theory of cavities with point-like perturbations. Part I: General theory
- Mesoscopic "Rydberg" atom in a microwave field