Measurements and modeling of gain coefficients for neodymium laser glasses

Small-signal gain coefficients are reported for neodymium in silicate, phosphate, fluorophosphate, and fluoroberyllate laser glasses. Measurements were made in a disk amplifier under identical conditions. Using spectroscopic data as the input, amplifier gain is calculated as a function of flashlamp...

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Veröffentlicht in:IEEE journal of quantum electronics 1979-06, Vol.15 (6), p.510-523
Hauptverfasser: Linford, G., Saroyan, R., Trenholme, J., Weber, M.
Format: Artikel
Sprache:eng
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Zusammenfassung:Small-signal gain coefficients are reported for neodymium in silicate, phosphate, fluorophosphate, and fluoroberyllate laser glasses. Measurements were made in a disk amplifier under identical conditions. Using spectroscopic data as the input, amplifier gain is calculated as a function of flashlamp energy, pumping pulse duration, disk thickness, and Nd-doping. The agreement between predicted and measured gains is generally with ±10 percent, consistent with experimental uncertainties in the model and the parameters used. The operating conditions which optimize amplifier performance and efficiency for a given laser glass may be found using spectroscopic data alone. This process can be extended to derive the most cost-effective staging of amplifier chains for fusion lasers. A discussion of the model and examples of calculations are presented.
ISSN:0018-9197
1558-1713
DOI:10.1109/JQE.1979.1070026