J. Lee, U. Ryu, S.J. Ahn, N. Park, ‘Enhancement of Power Conversion Efficiency for an L-band EDFA with a Secondary Pumping Effect in the Unpumped EDF Section’, IEEE Photonics Technology Letters, vol. 11, No. 1, Jan. 1999, pp. 42-44.* |
J.F. Massicott, R. Wyatt, B.J. Ainslie, Low Noise Operation of Er3+ Doped Silica Fibre Amplifier Around 1.6 μm Electronics Letters, Sep. 24, 1992, vol. 28, No. 20, pp. 1924-1925.* |
J. Nilsson, S.Y. Yun, S.T. Hwang, J.M. Kim, S.J. Kim, ‘Long-Wavelength Erbium-Doped Fiber Amplifier Gain Enhanced by ASE End-Reflectors’, IEEE Photonics Technology Letters, vol. 10, No. 11, Nov. 1998, pp. 1551-1553.* |
H. Ono, M. Yamada, Y. Ohishi, ‘Gain-Flattened Er3+ Doped Fiber Amplifier for a WDM Signal in the 1.57-1.60 μm Wavelength Region’, IEEE Photonics Technology Letters, vol. 9, No. 5, May 1997, pp. 596-598.* |
H. Masuda, S. Kawai, K. Aida, ‘Wideband erbium-dopd fibre amplifiers with three-stage amplification’, Electronics Letters, vol. 34, No. 6, Mar. 19, 1998, pp. 567-568.* |
Lee et al., Enhancement of Power Conversion Efficiency for an L-Band EDFA with a Secondary Pumping Effect in the Unpumped EDF Section, Jan. 1999, IEEE Photonics Technology Letters, vol. 11, No. 1, pp. 42-44. |
Cordina et al., Ultra Low Noise Long Wavelength EDFA With 3.6dB External Noise Figure. |
Espindola et al., Low noise, high gain, high conversion efficiency L-band EDFA, OAA, 1999, Nara Japan. |
Sun Y Et Al. “An 80 nm Ultra Wide Band EDFA With Low Noise Figure and High Output Power” vol. 5, 1997, pp. 69-72, XP002074523. |
Kakui et al., “Optical Amplification Characteristics around 1.58 μm of Silica-Based Erbium-Doped Fibers Containing Phosphorous/ Alumina as Codopants,” OSA Trends in Optics and Photonics Series, vol. 25, 1998, pp. 68-71. |