Rogin, P. and Hulliger, J., “Epitaxial Nd:YLF linear waveguide laser,” Optics Letters, vol. 22, No. 22, pp. 1701-1703 (Nov. 15, 1997). |
Izatt, Joseph A., Kulkami, Manish D., Kobayashi, Kenji, Sivak, Michael V., Barton, Jennifer, K., Welch, and Ashley J., “Optical Coherence Tomography For Biodiagnostics.” Optics & Photonics News, pp. 41-47 and 65 (May 1997). |
Li, Cheng Chung, Kim, Hong Koo, and Migliuolo, Michele, “Er-Doped Glass Ridge-Waveguide Amplifiers Fabricated with a Collimated Sputter Deposition Technique,” IEEE Photonics Technology Letters, vol. 9, No. 9, pp. 1223-1225 (Sep. 1997). |
Field, S.J., Hanna, D.C., Large, A.C., Shepherd, D.P., and Tropper, A.C., “Ion-implanted ND:GGG channel waveguide laser,” Optics Letters, vol. 17, No. 1, pp. 52-54 (Jan. 1, 1992). |
Sanford, N.A., Aust, J.A., Malone, K.J., and Larson, D.R., “Nd:LiTaO3 waveguide laser,” Optics Letters, vol. 17, No. 22, pp. 1578-1580, (Nov. 15, 1992). |
K. Suto et al., “Semiconductor Raman Laser with Pump Light Wavelength in the 800 nm Region,” 1046 Journal of the Electrochemical Society 140(1993) Jun., No. 6, Manchester, NH, US, 8 pp. |
Baumgartmer, Richard A. et al., “Optical Parametric Amplifaication,” IEEE Journal of Quantum Electronics, vol. QE-15, No. 6. pp. 432-444 (Jun. 1979). |
Bortz, M. L. et al., “Increased Acceptance Bandwidth for Quasi-Phasematched Second Harmonic Generation in LiNbO3 Waveguides,” IEEE, 2 pages (Oct. 28, 1993). |
Bradley, David, “Plastics That Play on Lights,” Science, Vol. 261, pp. 1272-1273, (Sep. 1993). |
Chartier, I. et al., “Growth and Low-Threshold Laser Oscillation of an Expitaxilly Grown Nd:Yag Waveguide,” Optic Letters, vol. 17, p. 810 (1992). |
Creaney, S. et al. “Continuous-Fiber Modulator with High-Bandwidth Coplanar Strip Electrodes,” IEEE Photonics Technology Letters, vol. 8, No. 3, pp. 355-357 (Mar. 1996). |
Fawcett, G. et al., “In-Line Fribre-Optic Intesity Modulator Using Electro-Optic Polymer,” Electronic Letters, vol. 28, No. 11, pp. 985-986 (May 1992). |
Helmfrid, S. et al., “Optical Parametric Amplification of a 1.54 μm Single-Mode DFB Laser in a Ti:LiNbO1 Waveguide, ” Journal of Lightwave Technology, vol. 11, No. 99, pp. 1459-1469 (Sep. 1993). |
Kozlov, V.A. et al. “In-Line Singlemode Fibre Based on LiF:F2-crystals, ” Electronic Letters, vol. 31, No. 24, p. 2104 (Nov. 23, 1995).. |
Marder, Seth R. and Perry, Joseph W., “Nonlinear Optical Polymers: Discovery to Market in 10 Years?” Science, Vol. 263, pp. 1706-1707 (Mar. 1994). |
McCallion, K. et al., “Investigation of Optical Fibre Switch Using Electro-Optic Interlays” (Dec. 1991). |
Millar, C.A. et al., “Exposed-Core Single-Mode Fiber Channel-Dropping Filter Using a High-Index Overly Waveguide,” Optical Society of America, vol. 12, No. 4, pp. 284-286 (Apr. 1987). |
Panajotov, Krassimir P., “Evanescent Field Coupling Between a Single-Mode Fiber and a Planar Waveguide with Absorption or Goin”, Optical Society of America, Vol. 13, No. 11, pp. 2468-2476 (Nov. 1996). |
Stewart, Kevin R., “Organic Crystals Give Optoelectronics a Boost,” Photonics Spretra, pp. 104-108 (Jul. 1994). |
Thyagarajan, K. et al., “Proton-exchanged Periodically Segmented Waveguides in LiNbO3,” Optics Letters, vol. 19, No. 12, pp. 880-882 (Jun. 15, 1994). |