N. Finkelstein, et al., "The Development of a Tunable Single-Frequency Ultraviolet Laser Source for UV Filtered Rayleigh Scattering," Dept. of Mechanical & Aerospace Engineering, Princeton University, Princeton, NJ 08544, pp. 1-7 (Jan. 10-13, 1994). |
T. Meguro, et al., "Solid-State Tunable Deep-Ultraviolet Laser System from 198-300 nm," Optics Letters, 19(2):102-104 (Jan. 1994). |
C. Zimmerman, et al., "All Solid State Laser Source for Tunable Blue and Ultraviolet Radiation," Appl. Phys. Lett. 66(18):2318-2320 (May 1995). |
L. Goldberg, et al., "Tunable UV Generation at 286 nm By Frequency Tripling of a High-Power Mode-Locked Semiconductor Laser," Optics Letters, 20(15):1640-1642 (Aug. 1995). |
L. Goldberg, et al., "Deep-UV Generation by Frequency Quadrupling of a High-Power GaAlAs Semiconductor Laser," Optics Letters, 20(10):1145-1147 (1995). |
L.E. Busse, et al., "3.cndot.OW Blue Light Generation by Frequency Doubling of Broad Area Semiconductor Amplifier Emission," Electronics Letters 29(1):776-78 (Jan. 1993). |
L. Goldberg, et al., "Blue Light Generation Using a High Power Tapered Amplifier Mode-Locked Laser," Appl. Phys. Lett. 65(5):522-524 (Aug. 1994). |
L. Goldberg, et al., "High Power Continuous Wave Blue Light Generation in KNbO.sub.3 Using Semiconductor Amplifier Seeded by a Laser Diode," Appl. Phys. Lett. 63(17):2327-2329 (Oct. 1993). |
D. Rafizadeh, et al., "Kilowatt Pulses at 1.55 .mu.m from a Singlemode Erbium-Doped Fibre Amplifier," Electronics Letters, 30(4):317-318 (Feb. 17, 1994). |
B. Desthieux, et al., "111 kW (0.5mJ) Pulse Amlification at 1.5 .mu.m Using a Gated Cascade of Three Erbium-Doped Fiber Amplifiers," Appl. Phys. Lett. 63(5):586-588 (Aug. 2, 1993). |
I.N. Duling, III, et al., "Single-Polarisation Fibre Amplifier," Electronics Letters, 28(12):1126-1128 (Jun. 4, 1992). |
Taverner, D., et al., "158 -.mu.J Pulses from a Single-Transverse-Mode, Large-Mode-Area Erbium-Doped Fiber Amplifier," Optics Letters, 22(6):378-380 (Mar. 15, 1997). |
Rafizadeh, D., et al., "Kilowatt Pulses at 1.55 .mu.m from a Singlemode Erbium-Doped Fibre Amplifier," Electronics Letters, 30(4):317-318 (Feb. 17, 1994). |
S. C Rashleigh, et al., "High Birefringence in Tension-Coiled Single-Mode Fibers," Optics Letters, 5(8):354-356 (Aug. 1980). |
G. P. Lees, et al., "Q-Switched Erbium Doped Fibre Laser Utilising a Novel Large Mode Area Fibre," Electronics Letters, 33(5):393-394 (Feb. 27, 1997). |
G. Sucha, "Fiber Lasers: A Little Package Carries a Big Punch," Photonics Spectra, pp.: 88-93 (Dec. 1997). |
L. Goldberg, et al., "V-Groove Side-Pumped 1.5 .mu.m Fibre Amplifier," Electronics Letters, 33(25):2127-2129 (Dec. 4, 1997). |
D.A.V. Kliner, et al., "Narrow-Band, Tunable, Semiconductor-Laser-Based Source For Deep-UV Absorption Spectroscopy," Optics Letters, 22(18):1418-1420 (Sep. 15, 1997). |
R. Paschotta, et al., "Ytterbium-Doped Fiber Aplifiers," IEEE Journal of Quantium Electronics 33(7):1049-1056 (Jul. 1997). |
J. Koplow, et al., "UV Generation by Frequency Quadrupling of a Yb-Doped Fiber Amplifier", IEEE Photonics Technology Letters 10(1):75-77 (Jan. 1998). |