2.0-J Ti:SAPPHIRE LASER OSCILLATOR
Christophe Müller, Dennis D. Lowenthal, Ken W. Kangas, L.P. Schanwald, B.F. Clark, G. C. Tisone, Roy A. Hamil
Abstract
Christophe Müller, Dennis D. Lowenthal, Ken W. Kangas, L.P. Schanwald, B.F. Clark, G. C. Tisone, Roy A. Hamil
Abstract
A multi-joule Ti:Sapphire oscillator has been constructed using an "end-pumped" configuration. The dye pump laser delivered up to ~10 J at 495 nm over 3.0 µsec (FWHM). Efficiencies of ≳20 percent were obtained and no parasitic oscillations were observed.
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A multi-joule Ti:Sapphire oscillator has been constructed using an "end-pumped" configuration. The dye pump laser delivered up to ~10 J at 495 nm over 3.0 µsec (FWHM). Efficiencies of ≳20 percent were obtained and no parasitic oscillations were observed.
Key concepts: Sapphire, Ti:sapphire laser, Laser, Materials science, Optoelectronics, Joule (programming language), Full width at half maximum, Laser pumping