Quantum interference in a four-level system of a atom: Effects of spontaneously generated coherence
arXiv:1010.1657 · doi:10.1103/PhysRevA.83.013810
Abstract
In this work, the effects of quantum interference and spontaneously generated coherence (SGC) are theoretically analyzed in a four level system of a atom. For the effects of SGC, we find that a new kind of EIT channel can be induced due to destructive interference, and the nonlinear Kerr absorption can be coherently narrowed or eliminated under different strengths of the coupling and switching fields.
9 pages, 5 figures
References in corpus (8)
- Electromagnetically induced transparency on a single artificial atom
- Strong photon non-linearities and photonic Mott insulators
- Giant Kerr nonlinearities in Circuit-QED
- Electromagnetically induced transparency for x rays
- Observation of ground-state quantum beats in atomic spontaneous emission
- Single molecule photon counting statistics for quantum mechanical chromophore dynamics
- Cross-Kerr interaction in a four-level atomic system
- Dark-State Polaritons in Single- and Double- Media
Cited by in corpus (7)
- Quantum coherence in the dynamical excitation, ionization, and decaying of neon gas induced by X-ray laser
- Triplet absorption spectroscopy and electromagnetically induced transparency
- Optical trap potential control in N-type four level atoms by femtosecond Gaussian pulses
- Role of spontaneously generated coherence (SGC) in laser cooling of atoms
- Effect of Closely-Spaced Excited States on Electromagnetically Induced Transparency
- Photon counting statistics in the presence of spectral diffusion induced by nonequilibrium environmental fluctuations
- Rydberg electromagnetically induced transparency and absorption of strontium triplet states in a weak microwave field