Berkey et al., “Negative Slope Dispersion Compensating Fibers”, Optical Fiber Communication Conference Technical Digest, 1999, vol. 2, pp. 235-237.* |
AMP, “Designers Guide to Fiber Optics”, AMP, Inc., Harrisburg, PA, 1982, p. 2.* |
Vengsarkar et al., Characterization of Dispersion Compensating Fibers, Technical Digest Sympsoium on Optical Fiber Measurements, 1994, pp. 175-180. |
Nielsen et al., Dispersion Compensating Fibres and Perspectives for Future Developments, ECOC 2000, pp. 91-94. |
Yanada et al., Dual-band Hybrid Transmission Line Consisting of Pure Silica core Fiber and Dispersion Compensating Fiber, Optical Fiber Communication Conference, Mar. 7, 2000, pp. 92-94. |
Nissov, et al., 32×20 Gb/s Transmission over Trans-Atlantic Distance (6,200 km) with 31% Spectral Efficiency, Optical Fiber Communication Conference, Mar. 7-10, 2000, PD30-1 through PD30-3. |
R. Sugizaki, Dispersion Slope Compensating Fibers for L-Band WDM Systems using NZ-DSF, Optical Fiber Communication Conference, Mar. 7-10, 2000, pp. 95-97. |
Bhagavatula et al., Novel Fibers for Dispersion-Managed high-bit-rate Systems, OFC '98 Technical Digest, pp. 21-22. |
Tsukitani et al., Low-loss Dispersion-flattened Hybrid Transmission Lines Consisting of Low-nonlinearity Pure Silica Core Fibres and Dispersion Compensating Fibres, Electronics Letters, vol. 36, No. 1, Jan. 6, 2000, pp. 64-66. |
Berkey et al., Negative Slope Dispersion Compensating Fibers, Conference on Optical Fiber Communications, Feb. 16-21, 1997, pp. 235-237. |
Semenov et al., Broadband Dispersion-Compensating Fiber for High-Bit-Rate Transmission Network Use, Applied Optics, vol. 34, No. 24, Aug. 20, 1995, pp. 5331-5337. |