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Optical all-pass filters for phase response design with applications for dispersion compensation

IEEE Photonics Technology Letters · 1998 · Vol. 10(7) · pp. 994–996
C.K. MadsenG. Lenz

Abstract

Lossless all-pass optical filters are introduced, which can approximate any desired phase response while maintaining a constant, unity amplitude response. Architectures using cascade and lattice structures based on ring resonators and cavities defined by reflectors are discussed. Two applications are presented: 1) for fiber dispersion compensation and 2) for compensation of the nonlinear phase response of narrow bandpass optical filters such as thin-film or Bragg grating filters. All orders of dispersion can be compensated in principle, and the filters are periodic so multiple channels can be compensated with a single device. The architectures are very compact compared to alternatives such as chirped Bragg gratings.

Photonic and Optical DevicesAdvanced Fiber Optic SensorsSemiconductor Lasers and Optical DevicesFiber Bragg gratingBand-pass filterOpticsMaterials scienceOptical filterPhase responseResonatorDispersion (optics)Optical ring resonatorsPhase (matter)
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IEEE Photonics Technology Letters · 2000 · 240 citations
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