首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Effect of temperature on optical properties and thermal conductivity of vanadate crystals doped with thulium and erbium
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Effect of temperature on optical properties and thermal conductivity of vanadate crystals doped with thulium and erbium

机译:温度对叶片和铒掺杂钒晶体的光学性质和导热率的影响

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Influence of temperature on spectroscopic and thermal properties of Tm3+ and Er3+ -doped GdVO4 and LuVO4 crystals was examined. Polarized absorption and emission spectra as well as excited state luminescence lifetimes have been measured and analyzed especially at cryogenic temperatures in the 1.5 1.6 gm and 1.8-1.9 gm spectral ranges to assess laser qualities of these materials. The emission cross sections for (4I)(132)->(4I)(15/2) (Er) and F-3(4)-> H-3(6) (Tm) transitions at T = 77 K were determined and confronted to the results obtained at room temperature. Effective emission cross sections estimated for aforementioned erbium and thulium transitions indicate that effective laser operation at cryogenic temperatures can be achieved in the gadolinium and lutetium vanadate crystals. Efficiency of laser material depends on its ability to heat distribution upon high-power energy pumping process. Accordingly, it has been found that the anisotropy of thermal conductivity for the undoped crystals is weakly influenced by the temperature albeit conductivity values for the GdVO4 are higher than those for LuVO4 at all temperatures. Incorporation of erbium or thulium ions results in a decrease of thermal conductivity in the two vanadate crystals and an anomalous temperature dependence of thermal conductivity in the LuVO4 was observed. Anisotropy of temperature dependence of thermal conductivity was found for the LuVO4:3.2 at%Tm3+ crystal. In this case the thermal conductivity along c-axis is inferior to that along a-axis of the crystal. (C) 2017 Elsevier B.V. All rights reserved.
机译:研究了温度对TM3 +和ER3 + + - 掺杂GDVO4和Luvo4晶体的光谱和热性能的影响。已经测量并分析了偏振吸收和发射光谱以及激发的状态发光寿命,特别是在1.5 1.6克和1.8-1.9克的光谱范围内的低温温度以评估这些材料的激光品质。确定(4i)(132) - >(4i)(15/2)(ER)和F-3(4) - > H-3(6)(TM)在T = 77k的转变的发射横截面测定并面对在室温下获得的结果。估计用于上述铒和转变的有效的发射横截面表明,在钆和含含油液中可以实现在低温温度下的有效激光操作。激光材料的效率取决于其在高功率能量泵浦过程中分配的能力。因此,已经发现,未掺杂的晶体的导热率的各向异性受到GDVO4的脂肪测量值的脂肪影响的弱影响,该温度高于所有温度的Luvo4的电导率值。掺入铒或硫粒子离子导致两种钒酸盐晶体中的导热率降低,并且观察到Luvo4中的导热率的异常温度依赖性。发现热导率的温度依赖性的各向异性为Luvo4:3.2,%TM3 +晶体。在这种情况下,沿C轴的导热率沿晶体的轴差不等。 (c)2017年Elsevier B.V.保留所有权利。

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