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- W2766331322 abstract "Solid state lasers with the radiation output in 1.5–3 μm spectral region are widely used for various medical applications due to strong absorption of water in biological tissues. Efficient laser oscillation of Ho3+ ions at 5I 6 –5I 7 transition in YSGG crystal co-doped with Yb3+ and Cr3+ ions was demonstrated in 2.84–3.05 μm spectral range [1, 2]. The lifetime of the upper laser level 5I 6 (0.47 ms) is shorter than that for the lower level 5I 7 (9.8 ms), hence there is a self-limited laser transition. The flash lamp pulses efficiently excites Cr3+ ions which transfers the excitation to 2F5/2 energy level of Yb3+ ion and further to 5I6 level of Ho3+. The Q-switching operation of three micron Ho3+Yb3+Cr3+:YSGG laser was demonstrated using LiNbOs [3], KTP electro-optic [4] elements, indium arsenide epitaxial layer and water cell passive Q-switches [3]. Fe-doped ZnSe crystal is known to be an effective active element for tunable high power mid IR lasers with maximum at 4.35 μm [4, 5]. It has broad absorption band with maximum at 3.1 μm; the excited state room temperature lifetime is 3 70 ns [4]. This allows to use them as a passive Q-switch of Ho doped lasers." @default.
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- W2766331322 date "2017-06-01" @default.
- W2766331322 modified "2023-09-25" @default.
- W2766331322 title "Three-micron Cr3+Yb3+Ho3+:YSGG laser passively Q-switched by Fe2+:ZnSe crystal" @default.
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- W2766331322 doi "https://doi.org/10.1109/cleoe-eqec.2017.8086246" @default.
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