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Electromagnetically Induced Transparency
Physics Today · 1997 · Vol. 50(7) · pp. 36–42
Stephen Harris✉(Stanford University)
Abstract
Electromagnetically induced transparency is a technique for eliminating the effect of a medium on a propagating beam of electromagnetic radiation. EIT may also be used, but under more limited conditions, to eliminate optical self-focusing and defocusing and to improve the transmission of laser beams through inhomogeneous refracting gases and metal vapors, as figure 1 illustrates. The technique may be used to create large populations of coherently driven uniformly phased atoms, thereby making possible new types of optoelectronic devices.
Quantum optics and atomic interactionsQuantum Information and CryptographyCold Atom Physics and Bose-Einstein CondensatesElectromagnetically induced transparencyTransparency (behavior)OpticsRadiationOptoelectronicsMaterials scienceLaserBeam (structure)Electromagnetic radiationOptical transparency
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References
Giant Kerr nonlinearities obtained by electromagnetically induced transparency
Optics Letters · 1996 · 1,154 citations
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