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Research on Beam Splitting Prism in Laser Heterodyne Interferometer

机译:激光外差干涉仪中分束棱镜的研究

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With the rapid development of optical testing technology, laser heterodyne interferometer has been used more and more widely. As the testing precision requirements continue to increase, the technical prism is an important component of heterodyne interference. The research utilizing thin film technology to improve optical performance of interferometer has been a new focus. In the article, based on the use requirements of interferometer beam splitting prism, select Ta_2O_5 and SiO_2 as high and low refractive index materials respectively, deposit on substrate K9. With the help of TFCalc design software and Needle method, adopting electron gun evaporation and ion assisted deposition, the beam splitting prism is prepared successfully and the ratio of transmittance and reflectance for this beam splitting prism in 500-850 nm band, incident angle 45 degree is 8:2. After repeated tests, solved the difference problem of film deposition process parameters controlled thickness monitoring precision effectively and finally prepared the ideal beam splitting prism which is high adhesion and stable optics properties. The film the laser induced damage threshold and it meet the requirements of heterodyne interferometer for use.
机译:随着光学测试技术的飞速发展,激光外差式干涉仪已经得到越来越广泛的应用。随着测试精度要求的不断提高,技术棱镜是外差干扰的重要组成部分。利用薄膜技术提高干涉仪光学性能的研究已成为新的研究热点。在本文中,根据干涉仪分束棱镜的使用要求,分别选择Ta_2O_5和SiO_2作为高折射率材料和低折射率材料,沉积在基板K9上。借助TFCalc设计软件和Needle方法,采用电子枪蒸发和离子辅助沉积技术,成功制备了分束棱镜,该分束棱镜在500-850 nm波段,入射角45度的透射率和反射率之比。是8:2。经过反复试验,有效地解决了成膜工艺参数差的问题,控制了厚度监测精度,最终制得了附着力强,光学性能稳定的理想分束棱镜。该膜的激光诱导损伤阈值满足外差干涉仪的使用要求。

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