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Comparison of tunable lasers based on diode pumped Tm-doped crystals

机译:基于二极管泵送TM掺杂晶体的可调谐激光器的比较

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We report on continuously tunable operation of a diode pumped lasers based on Tm-doped materials, emitting in the 1.8 — 2.1 pm spectral band. In our study we compare results obtained with three various single crystals doped by Tm3+ ions: Yttrium Aluminum perovskite YAP (YA1O 3 ), Gadolinium orthovanadate GdVO 4 , and Yttrium Lithium Fluoride YLF (YLiF 4 ). Following samples were available: the 3 mm long a-cut crystal rod of Tm:YAP with 4 % at. Tm/Y (diameter 3 mm); the 8 mm long b-cut crystal rod of Tm:YLF with 3.5 % at. Tm/Y (diameter 3 mm); the 2.7 mm long a-cut crystal block of Tm:GdVO 4 with 2 % at. Tm/Gd (crystal face 5 x 3 mm). For active medium pumping, the laser diode radiation was used. Because the tested samples differs significantly in absorption spectra, two fibre-coupled (core diameter 400 pm) temperature-tuned laser diodes were used: first operating at wavelength 793 nm was used for Tm:YAP and Tm:YLF; the second operating at wavelength 802 nm was used for Tm:GdVO 4 . In both cases, the continuous power up to 20 W was available for pumping. The diode radiation was focused into the active crystal by two achromatic doublet lenses with the focal length f = 75 mm. The measured radius of pumping beam focus inside the crystal was 260 pm. The longitudinally diode pumped crystals were tested in linear, 80 mm long, hemispherical laser cavity. The curved (radius 150 mm) output coupler reflectivity was 97 % in range from 1.8 up to 2.1 pm. The pumping flat mirror had maximal reflectivity in this range and it had high transmission around 0.8 pm. A 1.5 mm thick birefringent plate made from quartz (Lyot filter) inserted under a Brewster's angle was used as a tuning element. This plate was placed inside the resonator between the crystal and the output coupler. Using Tm:YAP crystal, the maximal output power of 2.8 W in this set-up was obtained. The laser could be tuned from 1865 nm up to 2036 nm with a maximum at 1985 nm. Laser based on Tm:YLF crystal was tunable from 1835 nm up to 2010 nm with a maximum at 1928 nm (3.0 W was reached). Using the Tm:GdVO4 tunable operation with greater that 1 W output at 1920 nm and 130 nm tuning range (1842 — 1972 nm) was demonstrated. The overall reached tuning range of over 200 nm covers many important atmospheric absorption lines and contains also the local absorption peak of liquid water, making them attractive for applications such as high resolution spectroscopy, atmospheric remote sensing, laser radar, and laser microsurgery.
机译:我们报告了基于TM掺杂材料的二极管泵浦激光器的连续可调操作,在1.8-2.1MPM PM光谱带中发射。在我们的研究中,我们将获得的结果与TM3 +离子的三种各种单晶进行比较:Yttrium铝钙钛矿Yap(Ya1O 3),钆脱甘油酯Gdvo 4和氟锂氟化钇Y1F(YLIF 4)。可获得以下样品:TM的3毫米长的A-CUT结晶棒:YAP含有4%。 TM / Y(直径3 mm); TM的8毫米长的B切割结晶棒:YLF含有3.5%。 TM / Y(直径3 mm); 2.7毫米长的TM:GDVO 4的晶块,2%AT。 TM / GD(晶体面5 x 3 mm)。对于活性介质泵送,使用激光二极管辐射。由于测试的样品在吸收光谱中显着不同,所以使用了两个纤维耦合(芯直径400μm)温度调节激光二极管:在波长793nm处首先用于Tm:YAP和TM:YLF;在波长802nm处的第二个操作用于TM:GDVO 4。在这两种情况下,高达20 W的连续电源可用于泵送。二极管辐射通过两个消色差双板透镜聚焦到活性晶体中,焦距F = 75mm。在晶体内部的泵浦光束聚焦的测量半径为260μm。在线性,80mm长,半球形激光腔中测试纵向二极管泵送晶体。弯曲(半径150mm)输出耦合器反射率为97%,范围为1.8至2.1μm。泵送平面镜在该范围内具有最大反射率,并且其速度高约0.8点。由在Brewster角度下插入的石英(Lyot过滤器)制成的1.5毫米厚的双折射板用作调谐元件。将该板放置在晶体和输出耦合器之间的谐振器内。使用TM:YAP Crystal,获得了该设置中2.8W的最大输出功率。激光可以从1865纳米高达2036nm调谐,最大为1985nm。基于TM的激光:YLF晶体从1835nm可调谐,最高为2010 nm,最大为1928nm(达到3.0w)。使用TM:GDVO4可调操作,具有较大的1W输出在1920nm和130nm调谐范围(1842 - 1972nm)。总体达到的调谐范围超过200nm涵盖许多重要的大气吸收线,并且还含有液态水的局部吸收峰,使它们对高分辨率光谱,大气遥感,激光雷达和激光微型手术等应用具有吸引力。

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