8106 IEEE Journal of Quantum Electronics 28 (1992) Apr., No. 4, New York, US Optical Tank Circuits Used for All-Optical Timing Recovery--Masahiko Jinno et al., pp. 895-900. |
Patent Abstracts of Japan--JP 2126243--vol. 14 No. 352 (P-1085), May 15, 1990 (p.01/01); Japanese Patent pp. 263-269 attached. |
BT Technol J vol. 11 No. 2 Apr. 1993--Nonlinear loop mirror devices and applications--K.J. Blow et al. pp. 99-107. |
IEEE Photonics Technology Letters, vol. 6, No. 1, Jan. 1994--"18 GHz All-Optical Frequency Locking and Clock Recovery Using a Self-Pulsating Two-Section DFB-Laser" --U. Feiste et al--pp. 106-108. |
IEEE Photonics Technology Letters, vol. 3, No. 10, Oct. 1991--All-Optical Clock Recovery from 5 Gb/s RZ Data Using a Self-Pulsating 1.56 .mu.m Laser Diode--P.E. Barnsley et al--pp. 942-945. |
Electronics Letters Sep. 10th 1992 vol. 28, No. 19--All-Optical Clock Recovery Using A Mode-Locked Laser--K. Smith et al., pp. 1814-1816. |
Electronics Letters May 12th 1994, vol. 30, No. 10, "Enhanced Recovery Rates In Semiconductor Laser Amplifiers Using Optical Pumping" --R.J. Manning et al., pp. 787-788. |
Electronics Letters Jan. 20th 1994, vol. 30, No. 2, 20 Gbit/s All-Optical Clock Recovery Using Semiconductor Nonlinearity, D.M. Patrick et al., pp. 151-152. |
Electronics Letters Jul. 22nd 1993, vol. 29, No. 15, All Optical Clock Recovery At Bit Rates Up To 40 Gbit/s--A.D. Ellis et al--pp. 1323-1324. |