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Dynamic Dispersion Compensation in a 10-Gb/s Optical System Using a Novel Voltage Tuned Nonlinearly Chirped Fiber Bragg Grating
Journal article

Dynamic Dispersion Compensation in a 10-Gb/s Optical System Using a Novel Voltage Tuned Nonlinearly Chirped Fiber Bragg Grating

K.-M. Feng, J.-X. Cai, V. Grubsky, D.S. Starodubov, M.I. Hayee, S. Lee, X. Jiang, A.E. Willner and J. Feinberg
IEEE Photonics Technology Letters, Vol.11(3), pp.373-375
03/1999

Abstract

Dispersion compensation Optical fiber communication Optical fiber dispersion Optical gratings
We experimentally demonstrate dynamic dispersion compensation using a novel nonlinearly chirped fiber Bragg grating in a 10-Gb/s system. A single piezoelectric transducer continuously tunes the induced dispersion from 300 to 1000 ps/nm. The system achieves a bit-error rate = 10 <sup>-9</sup> after both 50 and 104 km of single-mode fiber by dynamically tuning the dispersion of the grating between 500 and 1000 ps/nm, respectively. The power penalty after 104 km is reduced from 3.5 to < 1 dB.

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