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Fe∶ZnMnSe laser active material properties at room and cryogenic temperature

机译:Fe∶ZnMnSe激光活性材料在室温和低温下的性能

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摘要

Fe∶Zn(1-x)Mn(x)Se solid solution spectroscopic and laser properties were investigated in the temperature range 80-290 K. Two novel samples with different zinc - manganese (Zn-Mn) ratio described by the Mn content x (0.1 or 0.2) were used and the results were compared to the known Fe∶ZnSe crystal. The samples had a broad absorption spectra with the maximum around 3 μm and therefore an Er∶YAG laser (2.94 μm, 10 mJ, 120 ns) was used as a pump radiation source. The Fe:ZnMnSe fluorescence spectra are generally broad in the range 3.5 - 5.5 μm. In the case of Fe∶ZnMnSe x = 0.1, the fluorescence spectrum at 290 K is ranging from 3.5 to 5.5 μm. Lowering the temperature down to 80 K lead to the spectral narrowing mainly in the mid-IR part, but the fluorescence is still up to 5 μm at 80 K. In the case of Fe∶ZnMnSe x = 0.2 the fluorescence is shifted towards mid-IR up to 5.2 μm even at 80 K. The fluorescence lifetime decreases from tens of us at 80 K down to 1 us at 240 K. The laser oscillations were successfully achieved with both novel Fe∶ZnMnSe crystals in the temperature range 80- 290 K. In the case of x = 0.1, the central wavelength was ~4.2 μm at 80 K and the temperature increase up to 290 K led to almost linear increase of the wavelength up to ~4.75 μm. The tendency was similar in the case of Fe∶ZnMnSe x = 0.2: the output wavelength increased from ~4.3 μm up to ~4.8 μm with the temperature increase from 80 to 290 K. The laser spectral linewidth was about 300 ran. In comparison with the Fe∶ZnSe crystal, the laser output wavelength shift toward mid-IR region without any spectrally tunable element in the laser cavity can be clearly observed.
机译:研究了Fe∶Zn(1-x)Mn(x)Se在80-290 K温度范围内的固溶光谱和激光性能。用锰含量x描述了两个具有不同锌锰比的新型样品。使用(0.1或0.2),并将结果与​​已知的Fe∶ZnSe​​晶体进行比较。样品具有宽的吸收光谱,最大吸收光谱约为3μm,因此使用Er∶YAG激光(2.94μm,10 mJ,120 ns)作为泵浦辐射源。 Fe:ZnMnSe荧光光谱通常在3.5-5.5μm的范围内较宽。在Fe∶ZnMnSe x = 0.1的情况下,在290K下的荧光光谱为3.5至5.5μm。将温度降低至80 K会导致光谱主要在中红外部分变窄,但在80 K时荧光仍高达5μm。在Fe∶ZnMnSe x = 0.2的情况下,荧光向中红外移动即使在80 K时,IR仍高达5.2μm。荧光寿命从80 K时的数十微秒下降到240 K时的1微秒。两种新颖的Fe∶ZnMnSe晶体均在80- 290 K的温度范围内成功实现了激光振荡在x = 0.1的情况下,中心波长在80 K时约为4.2μm,温度升高到290 K导致波长在约4.75μm时几乎呈线性增长。在Fe∶ZnMnSe x = 0.2的情况下趋势相似:随着温度从80 K增加到290 K,输出波长从〜4.3μm增大到〜4.8μm。激光光谱线宽约为300 ran。与Fe∶ZnSe​​晶体相比,可以清楚地观察到激光输出波长向中红外区域移动,而激光腔中没有任何光谱可调元素。

著录项

  • 来源
    《Laser sources and applications III》|2016年|98930A.1-98930A.6|共6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, Prague 1,11519 Czech Republic;

    A. M. Prokhorov General Physics Institute, Russian Academy of Sciences, Laser Materials and Technology, Research Center, Vavilov Str.38, Moscow, 119991 Russia;

    A. M. Prokhorov General Physics Institute, Russian Academy of Sciences, Laser Materials and Technology, Research Center, Vavilov Str.38, Moscow, 119991 Russia;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering,Brehova 7, Prague 1,11519 Czech Republic;

    Institute for Single Crystals, NAS of Ukraine, 60 Lenin Ave., Kharkov, 61001 Ukraine;

    Institute for Single Crystals, NAS of Ukraine, 60 Lenin Ave., Kharkov, 61001 Ukraine;

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

    mid-infrared radiation; Fe∶ZnSe laser; Fe∶ZnMnSe laser;

    机译:中红外辐射; Fe∶ZnSe​​激光; Fe∶ZnMnSe激光;

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