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High temperature infrared absorption of CVD diamond measured by laser calorimetry

机译:激光量热法测量CVD金刚石的高温红外吸收

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摘要

The infrared absorption of CVD diamond at a wavelength of 10.6 mu m was measured as a function of temperature between 20 and 500 deg C. CVD diamond of different structural quality was investigated. Optical spectroscopy and infrared Raman scattering were used for the structural characterization. Laser calorimetry was applied to measure the IR absorption at elevated temperatures. For these measurements, CVD diamond devices with integrated heater and temperature sensor were prepared. The optical absorption at a given temperature was determined by comparing the temperature rise induced by CO_2 laser irradiation with the equivalent electrically induced temperature rise. Samples with a room temperature absorption coefficient of alpha=0.096 cm~(-1) and a=0.85 cm~(-1) were investigated. Despite this large difference, the absolute increase of the absorption coefficient with increasing temperature was found to be similar for the two samples. It increased by a value of about 0.5 cm~(-1) between 0 and 500 deg C.
机译:测量了CVD金刚石在10.6微米波长处的红外吸收随温度在20到500摄氏度之间的函数。研究了不同结构质量的CVD金刚石。光谱学和红外拉曼散射用于结构表征。应用激光量热法测量高温下的红外吸收。对于这些测量,准备了带有集成加热器和温度传感器的CVD金刚石设备。通过将CO_2激光辐照引起的温度升高与等效的电致温度升高进行比较,可以确定给定温度下的光吸收。研究了室温吸收系数为α= 0.096cm〜(-1)和a = 0.85cm〜(-1)的样品。尽管存在很大的差异,但发现两个样品的吸收系数随温度升高的绝对增加是相似的。它在0到500摄氏度之间增加了约0.5 cm〜(-1)的值。

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