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Guiding and confining light in void nanostructure

Optics Letters · 2004 · Vol. 29(11) · pp. 1209–1209
Vilson R. AlmeidaQianfan XuCarlos Angulo BarriosMichal Lipson

Abstract

We present a novel waveguide geometry for enhancing and confining light in a nanometer-wide low-index material. Light enhancement and confinement is caused by large discontinuity of the electric field at high-index-contrast interfaces. We show that by use of such a structure the field can be confined in a 50-nm-wide low-index region with a normalized intensity of 20 microm(-2). This intensity is approximately 20 times higher than what can be achieved in SiO2 with conventional rectangular waveguides.

Photonic Crystals and ApplicationsPhotonic and Optical DevicesAdvanced Fiber Optic SensorsOpticsRefractive indexElectric fieldMaterials scienceDiscontinuity (linguistics)Light intensityNanostructureVoid (composites)Intensity (physics)Total internal reflection
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References
Nanotaper for compact mode conversion
Optics Letters · 2003 · 855 citations
Ultra-compact Si-SiO<sub>2</sub> microring resonator optical channel dropping filters
IEEE Photonics Technology Letters · 1998 · 604 citations
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