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Novel ytterbium and thulium lasers based on the monoclinic KLu(WO_4)_2 crystalline host

机译:基于单斜斜(WO_4)_2晶体宿主的新型YTTerbium和慢藓分子

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High-quality crystals of KLu(WO4)2, shortly KLuW, were grown with sizes sufficient for characterization of the thermomechanical and optical properties, and substantial progress was achieved in the field of spectroscopy and laser operation with Yb~(3+)- and Tm~(3+)-doping. We review the properties of flux grown KLuW, the Yb~(3+) and Tm~(3+) spectroscopy, and present laser results obtained in several operational regimes both with Ti:sapphire and direct diode laser pumping using InGaAs and AlGaAs diodes near 980 and 800 nm, respectively. The slope efficiencies with respect to the absorbed pump power achieved with continuous-wave (CW) bulk and epitaxial Yb:KLuW lasers under Ti:sapphire laser pumping were ≈57 and ≈66%, respectively. Output powers as high as 3.28 W were obtained with diode pumping in a simple two-mirror cavity where the slope efficiency with respect to the incident pump power reached ≈78%. Passively Q-switched laser operation of bulk Yb:KLuW was realized with a Cr:YAG saturable absorber resulting in oscillation at ≈1031 nm with a repetition rate of 28 kHz and simultaneous Raman conversion to ≈1138 nm with maximum energies of 32.4 and 14.4 &mgr;J, respectively. The corresponding pulse durations were 1.41 and 0.71 ns. Passive mode-locking by a semiconductor saturable absorber mirror (SESAM) resulted in bandwidth-limited pulses with duration of 81 fs (1046 nm, 95 MHz) and 114 fs (1030 nm, 101 MHz) for bulk and epitaxial Yb:KLuW lasers, respectively. Slope efficiency as high as 69% with respect to the absorbed power and an output power of 4 W at 1950 nm were achieved with a diode-pumped Tm:KLuW laser. The tunability of this laser, under Ti:sapphire laser pumping, extended from 1800 to 1987 nm. An epitaxial Tm:KLuW laser provided slope efficiency as high as 64% and a tuning range from 1894 to 2039 nm when pumped by a Ti:sapphire laser.
机译:Klu(WO4)2的高质量晶体,短暂的kluW,尺寸增加了足以表征热机械和光学性质的表征,并且在yb〜(3 +)的光谱和激光操作领域实现了实质性进展 - 和TM〜(3 +) - 掺杂。我们审查了助焊剂,Yb〜(3+)和TM〜(3+)光谱的助焊剂的性质,并在几种操作制度中获得了目前使用Ti的操作制度:蓝宝石和直接二极管激光泵送使用indaas和Algaas二极管附近980和800nm。通过连续波(CW)散装和外延Yb实现的吸收泵功率的斜率效率:KluW激光器下的Ti:Sapphire激光泵送为A≈ 57和AP; 66%。在简单的双镜腔中使用二极管泵送的二极管泵送的输出功率,其中坡度相对于入射泵电力的斜率效率。78%。被动Q切换激光器的散装yb:Kluw用Cr:YAG饱和吸收器实现,导致AT AT AT AT振荡; 1031nm,重复率为28kHz,同时拉曼转换为≈ 1138nm,最大能量为32.4 14.4&mgr; j分别。相应的脉冲持续时间为1.41和0.71 ns。通过半导体可饱和吸收镜(SESAM)被动模式锁定导致带宽限制脉冲,持续81fs(1046nm,95MHz)和114 fs(1030nm,101 MHz)用于散装和外延Yb:KluW激光器,分别。通过二极管泵浦的TM:KLLLW激光器实现了相对于1950nm的吸收功率和4W的输出功率高达69%的斜率效率和4W的输出功率。该激光的可调性,下的Ti:蓝宝石激光泵送,从1800到1987纳米延伸。外延TM:KLLW激光器提供高达64%的斜率效率,并且在由Ti:蓝宝石激光泵送时,从1894到2039nm的调谐范围为0.papphire激光。

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