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Slow light in photonic crystal waveguides

Journal of Physics D Applied Physics · 2007 · Vol. 40(9) · pp. 2666–2670
Thomas F. Krauss

Abstract

The physical principles behind the phenomenon of slow light in photonic crystal waveguides, as well as their practical limitations, are discussed and put into context. This includes the nature of slow light propagation, its bandwidth limitation, the scaling of linear and nonlinear interactions with the slowdown factor as well as issues such as losses, coupling into and the tuning of slow modes. Applications in all-optical signal processing appear to be the most promising outcome of the phenomena discussed.

Photonic Crystals and ApplicationsPhotonic and Optical DevicesQuantum optics and atomic interactionsPhotonic crystalOptoelectronicsYablonoviteOpticsMaterials sciencePhotonic integrated circuitPhysics

Funding

  • Engineering and Physical Sciences Research Council
Citations
647
FWCI
29.47
field-weighted impact
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26
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100%
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Cited by
Slow light in photonic crystals
Nature Photonics · 2008 · 1,942 citations
References
Light Waves in Thin Films and Integrated Optics
Applied Optics · 1971 · 1,082 citations
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