Optics Express · 2009 · 31 citations · 14 references
WaveguidesOptical MaterialsQuantum PhotonicsEngineeringOptical Transmission SystemInduced TransparencyNew GenerationDark ModeWaveguide ModesOptical PropertiesGuided-wave OpticPhotonicsQuantum SciencePhysicsPhotonic DeviceElectro-optics DeviceOptical PhysicOptical WaveguidesApplied PhysicsNew ClassQuantum Photonic DeviceOptoelectronics
We propose and describe a new class of optical modes consisting of superposition of three waveguide modes which can be supported by a few-mode waveguide spatially modulated by two co-spatial gratings. These supermodes bear a close, but not exact, formal analogy to the three-level quantum states involved in EIT and its attendant slow light propagation characteristics. Of particular interest is the supermode which we call the dark mode in which, in analogy with the dark state of EIT, one of the three uncoupled waveguide modes is not excited. This mode has unique dispersion characteristics that translate into a slow light propagation which possesses high bandwidth-delay product and can form the basis for a new generation of optical resonators and lasers.
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Electromagnetically Induced Transparency
Stephen Harris · Physics Today · 1997 · 4K citations
Light speed reduction to 17 metres per second in an ultracold atomic gas
Lene Vestergaard Hau, S. E. Harris, Zachary Dutton et al. · Nature · 1999 · 3.9K citations · Full text
Engineering, Physics, Relativistic Laser-matter Interaction +5
Observation of coherent optical information storage in an atomic medium using halted light pulses
Chien Liu, Zachary Dutton, Cyrus H. Behroozi et al. · Nature · 2001 · 2.2K citations
Coupled-resonator-induced transparency
David D. Smith, Hongrok Chang, Kirk A. Fuller et al. · Physical Review A · 2004 · 502 citations