1987•Advanced Solid-State LasersRequires access

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

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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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What this paper is about

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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Available 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.

Key concepts: Sapphire, Ti:sapphire laser, Laser, Materials science, Optoelectronics, Joule (programming language), Full width at half maximum, Laser pumping

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