Resonantly pumped eyesafe erbium lasers
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[1] S. Pollack. Stimulated emission in CaF 2 :Er 3+ , 1963 .
[2] W. Krupke,et al. Energy Levels of Er3+ in LaF3 and Coherent Emission at 1.61 μ , 1964 .
[3] E. Snitzer,et al. Yb3+–Er3+ GLASS LASER , 1965 .
[4] Erratum: Energy Levels of Er3+ in LaF3 and Coherent Emission at 1.61 μ , 1965 .
[5] J. P. Remeika,et al. THE OPTICAL TRANSPARENCY OF YTTRIUM IRON GARNET IN THE NEAR INFRARED , 1965 .
[6] L. Johnson,et al. COHERENT OSCILLATIONS FROM Tm3+, Ho3+, Yb3+ and Er3+ IONS IN YTTRIUM ALUMINUM GARNET , 1965 .
[7] K. O. White,et al. Coincidence of Er : YAG laser emission with methane absorption at 1645.1 nm , 1972 .
[8] Walter Koechner,et al. Solid-State Laser Engineering , 1976 .
[9] Phonon-assisted upconversion in 1.64µm Er:YAG lasers , 1987 .
[10] Günter Huber,et al. Laser pumping of Ho-, Tm-, Er-doped garnet lasers at room temperature , 1988 .
[11] M. Lukač. Transient population dynamics in flashlamp pumped sensitized erbium glass lasers. , 1991, Applied optics.
[12] Kalin Spariosu,et al. Room-Temperature 1.644 Micron Er:YAG Lasers , 1992 .
[13] Lloyd L. Chase,et al. Infrared cross-section measurements for crystals doped with Er/sup 3+/, Tm/sup 3+/, and Ho/sup 3+/ , 1992 .
[14] Tso Yee Fan,et al. Optimizing the efficiency and stored energy in quasi-three-level lasers , 1992 .
[15] Bruno Viana,et al. Er 3+ :Y 3 Al 5 O 12 laser dynamics: effects of upconversion , 1994 .
[16] M. Birnbaum,et al. Intracavity 1.549-/spl mu/m pumped 1.634-/spl mu/m Er:YAG lasers at 300 K , 1994 .
[17] C. D. Nabors. Q-switched operation of quasi-three-level lasers , 1994 .
[18] K Spariosu,et al. Room-temperature 1.643-µm Er(3+):Y(3)Sc(2)Ga(3)O(12) (Er:YSGG) laser. , 1995, Applied optics.
[19] Leon Esterowitz,et al. Efficient 1.94-/spl mu/m Tm:YALO laser , 1995 .
[20] S. Nikolov,et al. Single-frequency diode-pumped erbium lasers at 1.55 and 1.64 mu m , 1995 .
[21] Raymond J. Beach,et al. Optimization of quasi-three level end-pumped Q-switched lasers , 1995 .
[22] G. Huber,et al. Infrared excited-state absorption and stimulated-emission cross sections of Er3+-doped crystals , 1995 .
[23] Photon avalanche upconversion in Er/sup 3+/:YAlO/sub 3/ , 1995 .
[24] Ernst Heumann,et al. Spectroscopic properties and diode pumped 1.6 μm laser performance in Yb-codoped Er: Y3Al5O12 and Er: Y2SiO5 , 1995 .
[25] R. Beach. CW Theory of quasi-three level end-pumped laser oscillators , 1996 .
[26] A. Kaminskiĭ,et al. Crystalline Lasers: Physical Processes and Operating Schemes , 1996 .
[27] C. Borel,et al. Room-temperature CW laser operation at /spl sim/1.55 /spl mu/m (eye-safe range) of Yb:Er and Yb:Er:Ce:Ca/sub 2/Al/sub 2/SiO/sub 7/ crystals , 1996 .
[28] R. Beach,et al. 115 W Tm:YAG CW diode-pumped solid-state laser , 1997 .
[29] Diode-pumped cw laser around 1.54 /spl mu/m using Yb,Er-doped silico-boro-phosphate glass , 1998, Technical Digest. Summaries of Papers Presented at the Conference on Lasers and Electro-Optics. Conference Edition. 1998 Technical Digest Series, Vol.6 (IEEE Cat. No.98CH36178).
[30] High-power diode-pumped Yb,Er:LSB laser at 1.56 /spl mu/m , 1998, Technical Digest. Summaries of Papers Presented at the Conference on Lasers and Electro-Optics. Conference Edition. 1998 Technical Digest Series, Vol.6 (IEEE Cat. No.98CH36178).
[31] R J Beach,et al. 183-W, M(2) = 2.4 Yb:YAG Q-switched laser. , 1999, Optics letters.
[32] W. Krupke,et al. Ytterbium solid-state lasers. The first decade , 2000, IEEE Journal of Selected Topics in Quantum Electronics.
[33] Leonard A. Pomeranz,et al. Efficient mid-infrared laser using 1.9-µm-pumped Ho:YAG and ZnGeP 2 optical parametric oscillators , 2000 .
[34] T. Lukasiewicz,et al. Laser oscillation of Er3+:YVO4 and Er3+, Yb3+:YVO4 crystals in the spectral range around 1.6 μm , 2000 .
[35] Evan P. Chicklis,et al. A high energy Q-switched erbium laser at 1.62 microns , 2001 .
[36] Efficient diode pumping for q-switched yb:er:glass lasers. , 2001, Applied optics.
[37] Olivier Musset,et al. 50 mJ/30 ns FTIR Q-switched diode-pumped Er:Yb:glass 1.54 μm laser , 2001 .
[38] Leon Esterowitz,et al. Efficient 1.94-μm Tm:YALO laser , 2002 .
[40] S. Setzler,et al. 5-W repetitively Q-switched Er:LuAG laser resonantly pumped by an erbium fiber laser. , 2003, Optics letters.
[41] Gunnar Arisholm,et al. Fiber laser pumped Mid-IR source , 2003 .
[42] W. Clarkson,et al. Ultra-efficient Ho:YAG laser end-pumped by a cladding-pumped Tm-doped silica fiber laser , 2003 .
[43] Scott J. Hamlin,et al. Eyesafe erbium glass microlaser , 2004, SPIE LASE.
[44] Evan P. Chicklis,et al. High-peak-power erbium lasers resonantly pumped by fiber lasers , 2004, SPIE LASE.
[45] S. Setzler,et al. Efficient 1645-nm Er:YAG laser. , 2004, Optics letters.
[46] Narasimha S. Prasad,et al. Passively Q-switched eyesafe Yb:Er:glass laser , 2004, SPIE LASE.
[47] Zack Huang,et al. High-power long-wavelength (1.4 to 1.5 mm) laser array and stacked arrays , 2004, SPIE LASE.
[48] Robert C. Stoneman,et al. High-Power Eyesafe YAG Lasers for Coherent Laser Radar , 2004 .
[49] Mark S. Bowers,et al. High-peak-power pulse amplification in SM fibers , 2004, SPIE LASE.
[50] K. Spariosu,et al. All-solid-state 12-watt CW and actively Q-switched Er:YAG laser operating at 1645 nm , 2005, SPIE LASE.
[51] D. Garbuzov,et al. 1617-nm Er:YAG Laser with Direct Resonant Laser Diode Pumping , 2005 .
[52] Nikolai Platonov,et al. 100 watt single-mode CW linearly polarized all-fiber format 1.56-μm laser with suppression of parasitic lasing effects , 2005, SPIE LASE.
[53] K. Spariosu,et al. All solid-state room temperature Er:YAG laser operating at 1617 nm , 2005, SPIE LASE.
[54] Jayanta K. Sahu,et al. High power and ultra efficient operation of 1645 nm Er:YAG laser pumped by a 100W tunable Er/Yb fiber laser , 2005 .