Burkett, and Min Xiao, Optics Letters, 25, 1732 (2000).ĭemonstration of chaos and period-doubling to chaos, and stochastic resonance in three-level atomic bistability near EIT resonance. “Cavity-Linewidth Narrowing via Electromagnetically Induced Transparency,” H.“Cavity Linewidth Narrowing and Broadening due to Competing Linear and Nonlinear Dispersions”, H.“White-light Cavity with Competing Linear and Nonlinear Dispersions”, H.“Observation of Intracavity Electromagnetically-induced Transparency and Polariton Resonances in a Doppler-broadened Medium”, H.“Transmission Spectrum of Doppler-broadened, Two-level Atoms in a Cavity in the Strong Coupling Regime”, J.“Evidence of Lasing without Inversion in a Hot rubidium Vapor under Electromagnetically-induced-transparency Conditions”, H.Transmission spectra with three-level EIT atoms inside an optical ring cavity, cavity linewidth narrowing and broadening due to modified linear and nonlinear dispersions. “Observation of Interference between Four-Wave Mixing and Six-Wave Mixing”, Y.“Opening Four-wave Mixing and Six-wave Mising Channels via Dual Electromagnetically Induced TRansparency Windows”, Y.P.“Efficient Energy Transfer between Four-wave-Mixing and Six-wave-Mixing Processes via Atomic Coherence”, Y.“Spatial Interference between Generated Four-wave Mixing and Six-wave Mixing Signals”, B.“Temporal and Spatial Interference between Four-wave Mixing and Six-wave Mixing Channels”, Y.Highlights of some significant EIT-related experimental papers:įirst experimental demonstration of co-existing four-wave mixing and six-wave mixing processes enhanced by atomic coherence in multi-level atomic systems. ![]() Electromagnetically Induced Transparency (EIT) and Its Related Effects (updated March 10, 2008).
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