Three-dimensional cavity-assisted spontaneous emission as a single-photon source: two cavity modes and Rabi resonance
arXiv:1707.09146 · doi:10.1103/PhysRevA.97.023809
Abstract
Within the framework of exact quantum electrodynamics in dispersing and absorbing media, we have studied the emission from an initially in the upper state prepared emitter in a high quality cavity in the case, when there are two cavity modes that resonantly interact with the emitter. In particular, when one of the modes is in resonance with the emitter transition and the other mode is tuned to the frequency equal to the Rabi splitting of the first mode, the effect of Rabi resonance is observed.
Misprints in Eqs. (14) and (20) are corrected
References in corpus (8)
- Entangled Photon Pairs from Semiconductor Quantum Dots
- Nonlinear response of the vacuum Rabi resonance
- Nonlocality of a single particle
- Photon emission by an atom in a lossy cavity
- Tomographic test of Bell's inequality for a time-delocalized single photon
- Raman-assisted Rabi resonances in two-mode cavity QED
- Cavity-assisted spontaneous emission as a single-photon source: Pulse shape and efficiency of one-photon Fock state preparation
- Cavity-assisted spontaneous emission of a single -type emitter as a source of single-photon packets with controlled shape