Reconstruction of the environmental correlation function from single emitter photon statistics: a non-Markovian approach
arXiv:1212.0400 · doi:10.1103/PhysRevA.87.053851
Abstract
We consider the two-level system approximation of a single emitter driven by a continuous laser pump and simultaneously coupled to the electromagnetic vacuum and to a thermal reservoir beyond the Markovian approximation. We discuss the connection between a rigorous microscopic theory and the phenomenological spectral diffusion approach, used to model the interaction of the emitter with the thermal bath, and obtained analytic expressions relating the thermal correlation function to the single emitter photon statistics.
References in corpus (6)
- The Quantum Jump Approach to Dissipative Dynamics in Quantum Optics
- Non-Markovian Quantum State Diffusion
- Non-Markovian quantum state diffusion: Perturbation approach
- Non-Markovian non-stationary completely positive open quantum system dynamics
- Photon Statistics for Single Molecule Non-Linear Spectroscopy
- Probing Dynamics of Single Molecules: Non-linear Spectroscopy Approach