Subband all-pass filter architectures with applications to dispersion and dispersion-slope compensation and continuously variable delay lines
A new optical filter architecture is proposed that employs optical subband and all-pass filters but circumvents the typical tradeoff between passband width and peak delay inherent to all-pass filters. A filter design for a dispersion compensator with a tuning range of /spl plusmn/1000 ps/nm and 95-G...
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Veröffentlicht in: | Journal of lightwave technology 2003-10, Vol.21 (10), p.2412-2420 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | A new optical filter architecture is proposed that employs optical subband and all-pass filters but circumvents the typical tradeoff between passband width and peak delay inherent to all-pass filters. A filter design for a dispersion compensator with a tuning range of /spl plusmn/1000 ps/nm and 95-GHz passband width on a 100-GHz grid is presented. Compared with a cascade architecture, a lower core-to-cladding index contrast for planar waveguide ring resonator implementations can be used, and lower filter losses are achieved, since the signal propagates through fewer all-pass filter stages for the same dispersion. A continuously variable delay line is designed with more than 90% bandwidth utilization. For a ten-stage all-pass filter with 25-GHz free spectral range (FSR) in a double-pass configuration, a 1000-ps continuous tuning range can be achieved. Finally, a dispersion-slope compensator design is presented with a change in dispersion of 700 ps/nm over a wavelength range determined by the filter FSR-to-channel-spacing ratio. |
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ISSN: | 0733-8724 1558-2213 |
DOI: | 10.1109/JLT.2003.814405 |