Spectroscopic characterization of Yb3+-doped laser materials at cryogenic temperatures


Spectroscopic characterization of Yb3+-doped laser materials at cryogenic temperatures

Koerner, J.; Jambunathan, V.; Hein, J.; Seifert, R.; Loeser, M.; Siebold, M.; Schramm, U.; Sikocinski, P.; Lucianetti, A.; Mocek, T.; Kaluza, M.

We present measurements of the absorption and emission cross-sections for Yb:YAG, Yb:LuAG and Yb:CaF2 as a function of temperature between 80 K and 340 K. The cross-sections are determined by the combination of the McCumber relation and the Fuchtbauer - Ladenburg equation to achieve reliable results in spectral regions of high and low absorption. The experimental setup used for the fluorescence measurements minimizes re-absorption effects due to the measurement from small sample volume, providing nearly undisturbed raw data for the Fuchtbauer - Ladenburg approach. The retrieved cross-sections together with the spectral characteristics of the tested materials provide important information for the design of energy efficient, high-power laser amplifiers.

Keywords: cryogenic; Ytterbium; cross-section; Yb:YAG; Yb:LuAG; Yb:CaF2

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