Watanabe et al., “Simultaneous Wavelength Conversion and Optica Phase conjugation of 200 Gb/s (5 =40 GB/s) WDM Signal using a highly conlinear fiber four -wave mixer”, Sep. 1997, Conference Publication No. 448, pp 1-4.* |
Moore, “A model for diffraction-limited high-power multimode fiber amplifiers using seeded stimulated brillouin scattering phas conjugation”, Jun. 2001, IEEE Journal of quantum electronics, pp 781-789.* |
S. Watanabe, M. Shirasaki, “Exact Compensation for Both Chromatic Dispersion and Kerr Effect in a Transmission Fiber Using Optical Phase Conjugation,” Journal of Lightwave Technology, vol. 14, No. 3, Mar. 1996, pps. 243-248. |
“Laser Study” (in Japanese), The Society of Laser Engineers (30 06 96), vol. 24, No. 6, pps. 649-655. |
S. Watanabe, “Cancellation of Four-Wave Mixing in a Single-Mode Fiber by Midway Optical Phase Conjugation,” Optics Letters, vol. 19, No. 17, Sep. 1, 1994, pps. 1308-1310. |
Inoue, “Suppression Technique for Fiber Four-Wave Mixng Using Optical Multi-Demultiplexers and a Delay Line”, Mar. 1993, Journal of Lightwave Technology, vol. 11, No. 33, pp. 455-461. |
Hedekvist et al., “Impact of Spectral Inverter Fiber Length on Four Wave Mixing Efficiency and Signal Distortion”, Sep. 1995, Journal of Lightwave Technology, vol. 13, No. 9, pp. 1815-1819. |
Kikuchi et al., “Design of Highly Efficient Four-Wave Mixing Devices Using Optical Fibers”, IEEE Photonics Technology Letters, vol. 6, No. 8, pp. 992-994. |
Inoue et al., “Wavelength Conversion Experiment Using Fiber Four-Wave Mixing”, Jan. 1992, IEEE Photonics Technology Letters, vol. 4, No. 1, pp. 69-72. |