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Effect of the internal Stress of Polished Thick Diamond Film on the Infrared Transmittance at Different Temperature

机译:抛光厚金刚石膜内应力对不同温度红外透射率的影响

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The optical-grade diamond film was prepared by DC plasma jet CVD method, and a double-sided polishing was made by EDM and mechanical polishing technology. The investigations of the internal stress at different temperature on the infrared transmission were tested in detail. SEM and AFM were used to study the polished surface morphology, surface roughness was 0.12nm and 0.25nm. XRD and Raman were characterized on the diamond films, the results showed a higher intrinsic quality. The internal stress distribution and infrared transmittance were investigated at 25 °C and 100°C temperature respectively. The infrared transmission mechanism of diamond film was also discussed. The main reason of decreasing of infrared transmittance was the increasing grain collisions, which caused more scattering and absorption of incident light with temperature increasing.
机译:通过DC等离子体喷射CVD方法制备光学级金刚石膜,通过EDM和机械抛光技术制造双面抛光。详细地测试了对红外变速器不同温度的内应力对红外变速器的研究。 SEM和AFM用于研究抛光的表面形态,表面粗糙度为0.12nm和0.25nm。 XRD和拉曼的特征在于钻石薄膜,结果表明了更高的内在质量。在25℃和100℃的温度下研究内应力分布和红外透射率。还讨论了金刚石膜的红外传动机制。红外透射率下降的主要原因是谷物碰撞的增加,这导致温度越来越多的入射光的散射和吸收。

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