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Cryogenic Tm∶YAP microchip laser

机译:低温Tm∶YAP微芯片激光器

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摘要

The spectral characteristics of laser active media, and thus those of the laser output, are temperature dependent. Specifically, in almost every crystal host, cooling to low temperatures leads to better heat removal, a higher efficiency and output power, and a reduced lasing threshold. Tm-ion doped lasers have an emission wavelength around 2 μm and are important in medicine for soft tissue cutting and hemostasis, as well as in LIDAR or atmosphere sensing technology. This paper presents the performance-temperature dependency of a 4 at. % doped Tm∶YAP microchip. During the experiment the Tm∶YAP crystal was placed inside an evacuated liquid nitrogen cryostat on a cooling finger. As its temperature was varied from 80 K to 340 K, changes were observed in the absorption spectrum, ranging from 750 nm to 2000 nm and in the fluorescence spectrum from 1600 nm to 2050 nm. Fluorescence lifetime was seen to rise and fall with decreasing temperature. The laser was pumped by a 792 nm laser diode and at 80 K the maximum output peak power of the laser was 4.6 W with 23 % slope efficiency and 0.6 W threshold, compared to 2.4 W output peak power, 13 % slope efficiency and 3.3 W threshold when at 340 K. The laser emission wavelength changed from 1883 nm to 1993 nm for 80 K and 300 K, respectively.
机译:激光活性介质的光谱特性以及激光输出的光谱特性与温度有关。具体而言,几乎在所有晶体主机中,冷却至低温都会导致更好的散热效果,更高的效率和输出功率以及更低的激射阈值。掺有Tm离子的激光器的发射波长约为2μm,在软组织切割和止血的药物以及LIDAR或大气传感技术中非常重要。本文介绍了4 at时的性能温度依赖性。 %掺杂的Tm∶YAP芯片。在实验过程中,将Tm∶YAP晶体放在抽空的液氮低温恒温器中。当其温度在80 K至340 K之间变化时,在750 nm至2000 nm的吸收光谱和1600 nm至2050 nm的荧光光谱中观察到变化。观察到荧光寿命随着温度降低而升高和降低。激光器由792 nm激光二极管泵浦,在80 K时,激光器的最大输出峰值功率为4.6 W,斜率效率为23%,阈值为0.6 W,而输出峰值功率为2.4 W,斜率效率为13%,功率为3.3 W 340 K时的最大阈值。对于80 K和300 K,激光发射波长分别从1883 nm变为1993 nm。

著录项

  • 来源
    《Laser sources and applications III》|2016年|98930Q.1-98930Q.8|共8页
  • 会议地点 Brussels(BE)
  • 作者单位

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering Brehova 7,115 19 Prague 1, Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering Brehova 7,115 19 Prague 1, Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering Brehova 7,115 19 Prague 1, Czech Republic;

    CRYTUR, Ltd. Turnov, Palackeho 175 Turnov, Czech Republic;

    CRYTUR, Ltd. Turnov, Palackeho 175 Turnov, Czech Republic;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Lasers; Tm∶YAP; Microchip; Cryogenic cooling; Cryostat;

    机译:激光; Tm∶YAP;微芯片;低温冷却;低温恒温器;

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