Electronics, vol. 43, No. 20, 28th Sep. 1979, pp. 129-130, New York, USA "Glass Laser Fibers Help Transmit and Amplify Beams". |
Optical Fiber Communication Conference, Technical Digest, 24th-26th Feb. 1986 Atlanta, Ga., Paper TUL15, pp. 62-64, IEEE, New York, USA; R.J. Mears et al.: "Rare-Earth-Doped Fiber Lasers". |
Applied Physics Letters, vol. 23, No. 7, 1st Oct. 1973, pp. 388-389, American Institute of Physics: J. Stone et al.: "Neodymium-Doped Silica Lasers in End-Pumped Fiber Geometry". |
Journal of The American Ceramic Society, vol. 56, No. 2, Feb. '73, pp. 68-72 E.A. Weaver et al.: "Lasing in a Phase-Separated Glass". |
Journal of the Electrochemical Society, vol. 122, No. 1, Jan. 75, pp. 101-107, F. Auzel et al., "Rare Earth Doped Vitroceramics: New, Efficient, Blue and Green Emitting Materials for Infrared Up-Conclusions". |
Japanese Journal of Applied Physics, vol. 23, No. 6, pt. 3, Jun. 1984, pp. L409-L411, Tokyo, JP: H. Namikawa et al., "Preparation of Nd-Doped SiO.sub.2 Glasses by Axial Injection Plasma Torch CVD and Their Fluorescence Properties." |
Electronics Letters, Aug. 15, 1985, vol. 21, No. 17, "Fabrication of Low-Loss Optical Fibres Containing Rare--Earth Ions", pp. 737-738, Poole et al. |
Electronics Letters, vol. 22, No. 8, Apr. 10, 1986, pp. 411-412, Hitchin, Herts, GB:S. Patela et al., "Non-Linear Prism Coupling in Wave Guiding Structures Deposits on to Semiconductor-Doped Glass." |
Soviet Journal of Quantum Electronics, vol. 12, No. 10, Oct. 1982, pp. 1343-1345, N.Y. V. G. Abashkin et al., "Non-Linear Absorption of Light in Glassy Arsenic Surlfide Fibers in the Energy Range Hnu Less Than Eg". |
Soviet Journal of Quantum Electronics, vol. 12, No. 12, Dec. 1982, pp. 1571-1574, N.Y. V.G. Abashkin et al.: "Glassy Chalcogenide Semiconductor Fibers." |
Journal of the Optical Society of America, vol. 73, No. 5, May 1983, pp. 647-653, N.Y., R.R. Jain et al., "Degenerate Four-Wave Mixing in Semiconductor-Doped Glasses".--Abstract. |
Digest of Technical Papers, Conference on Laser and Electro Optics, 21-24 May, 85, p. 290 OSA/IEEE, Baltimore, Md., U.S.A.: S.S. Yau et al., "Ultrafast Optical Signal Processing Using Semiconductor-Doped Glasses". |
"Optical Fibres with an Al.sub.2 O.sub.3 -Doped Silicate Core Composition", Electronics Letters, vol. 19, No. 7, 31 Mar. 1983, pp. 261-262. |
"Neodymium-doped Silica Lasers in End-Pumped Fiber Geometry", Appl. Phys. Lett., vol. 23, No. 7, 1 Oct. 1973, pp. 388-389. |
Patent Abstracts of Japan, vol. 11, No. 328 (P-629) 27 Oct. 1987, Shoichi et al. |
JP-A-62111208 (N.T.T) 22 May 1987. |
"Fabrication and Characterization of Low-Loss Optical Fibers Containing Rare-Earth Ions", Journal of Lightwave Technology, vol. LT-4, No. 7, Jul. 1986, pp. 870-875. |
"Aluminum or Phosphorus Co-Doping Effects on the Fluorescence and Structural Properties of Neodymium-Doped Silica Glass", J. Appl. Phys., 59(10), 15 May 1986, pp. 3430-3436. |
Mears, R.J., et al., "High-gain rate-earth-doped Fiber Amplifier at 1.54.mu.m", Optical Fiber Communication Conference, Sixth International Conference on Integrated Optics and Optical Fiber Communication Technical Digest, Jan. 19-22, 1987. |
Poole, Simon B., et al., "Fabrication and Characterization of Low-Loss Optical Fibers Containing Rare-Earth Ions", Journal of Lightwave Technology, vol. LT. 4, No. 7, Jul. 1986. |
Electronics Letters, vol. 19, pp. 261-262. |