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Thermal conductivity investigation of Adhesive-Free Bond laser components

机译:无粘合剂粘合激光组分的导热性研究

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An interferometric method has been developed and employed at Onyx Optics, Inc. to accurately measure the thermal conductivity of laser-active crystals as function of dopant concentration or inactive materials such as single crystals, optical ceramics and glasses relative to a standard of assumed to be known thermal conductivity [1]. This technique can also provide information on heat transfer resistance at the interface between two materials in close thermal contact. While the technique appears generally applicable to composites between optically homogeneous materials, we report on thermal conductivities and heat transfer coefficients of selected adhesive-free bond (AFB?) laser composites. Single crystal bars and AFB bonded crystal doublets with the combinations of various rare-earth (Nd~(3+), Yb~(3+), Er~(3+) and Tm~(3+)trivalent ion doped YAG, and un-doped YAG have been fabricated with the AFB technique. By loading the test sample in a vacuum cryostat, with a precisely controlled heat load at one end of the doublets, the temperature distribution inside the single crystal or the composite samples can been precisely mapped by measuring the optical path difference interferometrically, given the material's thermal-optical properties. No measurable heat transfer resistance can be identified for the AFB interfaces between low-concentration doped YAG and un-doped YAG. For the heavily doped RE~(3+):YAG, for example, 10% Yb:YAG, the thermal conductivity measured in our experiment is 8.3 W/m·K, using the thermal conductivity of undoped YAG reported in [1] as basis. The thermal transfer resistance of the AFB interface with un-doped YAG, if there is any at the AFB interface, could be less than 1.29×10~(-6) m~2·K/W.
机译:在Onyx Optics,Inc。开发和采用干涉方法,以便在掺杂剂浓度或非晶体,光学陶瓷和玻璃的掺杂剂浓度或不活性材料的功能中精确地测量激光活性晶体的导热率,相对于假设的标准已知的导热性[1]。该技术还可以提供关于在近似热接触的两种材料之间的界面处的传热电阻的信息。虽然该技术通常看起来通常适用于光学均质材料之间的复合材料,但我们报告了无选粘合剂(AFBα)激光复合材料的热导体和传热系数。单晶条和AFB粘合的晶体双重配合各种稀土(ND〜(3+),YB〜(3+),ER〜(3+)和TM〜(3+)三价离子掺杂YAG,以及通过AFB技术制造了未掺杂的YAG。通过在真空低温恒温器中加载测试样品,在双重的一端具有精确控制的热负荷,可以精确地映射单晶内的温度分布或复合样品通过测量材料的热光学性能来测量光学路径差异。可以在低浓度掺杂的YAG和未掺杂的YAG之间识别可测量的传热阻力。对于重掺杂的RE〜(3+) :例如,YAG,10%YB:YAG,在我们的实验中测量的导热率为8.3W / m·k,使用[1]中的未掺杂YAG的导热率作为基础。AFB接口的热传递电阻如果在AFB接口中有任何掺杂的YAG,可以小于1.29×10〜(-6)m〜2·k / w。

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