Title :
Optical properties and laser performances of highly neodymium-doped YAG ceramics
Author :
Shoji, I. ; Kurimura, Sunao ; Sato, Y. ; Taira, T. ; Ikesue, A. ; Yoshida, K.
Author_Institution :
Laser Res. Center, Okazaki, Japan
Abstract :
Summary form only given. Diode-pumped microchip solid-state lasers have such advantages as compactness, high efficiency, high power, and low numbers of longitudinal and transverse modes. A wide variety of materials have been investigated to develop more efficient and higher power microchip lasers. Although Nd:YVO/sub 4/ is a suitable material for highly efficient microchip laser owing to its large absorption cross section, high-power operation is difficult because its thermo-mechanical properties are poor. On the other hand, while Nd:YAG has good thermal properties, highly efficient microchip laser has never been reported because high doping (>1 at.%) of neodymium into the YAG crystal is impossible, limiting pump absorption. We report measurements of the absorption spectra and the fluorescence lifetime of ceramic Nd:YAG in order to show that it is a promising material as a highly efficient and high power microchip laser. Moreover, we characterized its laser performance.
Keywords :
ceramics; fluorescence; impurity absorption spectra; infrared spectra; laser beams; laser modes; micro-optics; neodymium; optical pumping; photoluminescence; radiative lifetimes; solid lasers; Nd-doped YAG ceramics; Nd:YVO/sub 4/; YAG:Nd; YAl5O12:Nd; absorption cross section; absorption spectra; ceramic Nd:YAG; compact laser; diode-pumped microchip solid-state lasers; fluorescence lifetime; high efficiency laser; high power laser; high-power operation; highly efficient high power microchip laser; laser performance; laser performances; longitudinal modes; microchip laser; microchip lasers; optical properties; pump absorption; thermal properties; thermo-mechanical properties; transverse modes; Absorption; Diodes; Laser modes; Microchip lasers; Optical materials; Optical pumping; Power lasers; Pump lasers; Solid lasers; Thermomechanical processes;
Conference_Titel :
Lasers and Electro-Optics, 2000. (CLEO 2000). Conference on
Conference_Location :
San Francisco, CA, USA
Print_ISBN :
1-55752-634-6
DOI :
10.1109/CLEO.2000.907245