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Chip-scale dispersion engineering using chirped vertical gratings
Journal article   Peer reviewed

Chip-scale dispersion engineering using chirped vertical gratings

D. T. H. Tan, K. Ikeda, R. E. Saperstein, B. Slutsky and Y. Fainman
Optics letters, Vol.33(24), pp.3013-3015
15/12/2008
PMID: 19079525

Abstract

Optics Physical Sciences Science & Technology
A strongly coupled, chirped Bragg grating made by sinusoidally modulating the sidewalls of a silicon waveguide is designed, fabricated, and experimentally characterized. By varying the device parameters, the operating wavelength, device bandwidth, sign (normal or anomalous), and magnitude of group-velocity dispersion may be engineered for specific photonic applications. Asymmetric Blackman apodization is best suited for maximizing the useable bandwidth while providing good ripple suppression. Dispersion values up to 7.0 x 10(5) ps/nm/km are demonstrated at 1.55 mu m. (C) 2008 Optical Society of America

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