Pr(3+)-doped fluoride fiber amplifier operating at 1.31 microm.
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E. Snitzer | T. Kitagawa | G. Sigel | Y. Ohishi | T. Kanamori | Y Ohishi | T Kanamori | S Takahashi | E Snitzer | S. Takahashi | G H Sigel | T Kitagawa
[1] Y. Ohishi,et al. Transmission loss characteristics of fluoride glass single-mode fibre , 1986 .
[2] Richard S. Quimby,et al. 1.3μm fluoride fibre laser , 1988 .
[3] Steven T. Davey,et al. Amplification at 1.3 mu m in a Pr/sup 3+/-doped single-mode fluorozirconate fibre , 1991 .
[4] B. Judd,et al. OPTICAL ABSORPTION INTENSITIES OF RARE-EARTH IONS , 1962 .
[5] G. S. Ofelt. Intensities of Crystal Spectra of Rare‐Earth Ions , 1962 .
[6] J. E. Pedersen,et al. High saturation output power from a neodymium-doped fluoride fibre amplifier operating in the 1300 nm telecommunications window , 1990 .
[7] Y. Miyajima,et al. 10 dB gain and high saturation power in a Nd/sup 3+/-doped fluorozirconate fibre amplifier , 1990 .
[8] M.J.F. Digonnet,et al. Closed-form expressions for the gain in three- and four-level laser fibers , 1990 .
[9] Renata Reisfeld,et al. Spectroscopy of praseodymium(III) in zirconium fluoride glass , 1985 .
[10] H. Poignant,et al. Amplification and lasing at 1.3 mu m in praseodymium-doped fluorozirconate fibres , 1991 .