Analysis and Control of Quantum Finite-level Systems Driven by Single-photon Input States
arXiv:1412.1273 · doi:10.1016/j.automatica.2016.02.020
Abstract
Single-photon states, which carry quantum information and coherently interact with quantum systems, are vital to the realization of all-optical engineered quantum networks. In this paper we derive the analytical form of the output field state for a large class of quantum finite-level systems driven by single-photon input field states using a transfer function approach. Single-photon pulse shaping via coherent feedback is also studied.
8 pages, 1 figures