Paper
22 June 2013 Optical loss and residual stress measurement of infrared chalcogenide glasses and analysis on its influencing factors
Baoan Song, Yan Yang, Zhitai Jia, Feifei Chen, Changgui Lin, Shixun Dai, Xunsi Wang, Xiang Shen, Tiefeng Xu, Qiuhua Nie
Author Affiliations +
Proceedings Volume 8769, International Conference on Optics in Precision Engineering and Nanotechnology (icOPEN2013); 87693R (2013) https://doi.org/10.1117/12.2021071
Event: International Conference on Optics in Precision Engineering and Nanotechnology (icOPEN2013), 2013, Singapore, Singapore
Abstract
Chalcogenide glasses (ChGs) have a relatively small temperature coefficient of refractive index, broad transmission range from almost visible to mid-infrared. It is suitable for precision molding. With the help of above mentioned merits, ChGs have a vast reservoir of value in the field of military and civilian infrared imaging. However, the internal defects of ChGs are caused by melting, cool-demoulding and annealing in a high vacuumed ampoule. The defects include the optical inhomogeneity, chemical inhomogeneity and built-in stress which trouble the homogeneity of ChGs and directly affect the imaging quality of infrared imaging devices. The detection and control of internal defects is a key technique. In this paper the platform for testing, characterization and evaluation of the inhomogeneity of ChGs will be designed and built. The appropriate testing and evaluation criteria of inhomogeneity during the preparation procedure of ChGs in the vacuumed ampoule will be studied. The transmittance of ChGs sample is measured repeatedly. The factor of internal multple reflection in ChGs sample is analysed and discussed. Analysis shows that the mean transmissivity of ChGs sample (Ge28Sb12Se60) with thick of 1 cm is approximately 66% in 8 to 11 microns. The loss is less than 2.40%/cm. The optical path difference (OPD) caused by residual stress in ChGs sample is less than 5.2 nm/cm. The results will provide a technical support to optimize the ChGs preparation process and improve the ChGs homogeneity.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Baoan Song, Yan Yang, Zhitai Jia, Feifei Chen, Changgui Lin, Shixun Dai, Xunsi Wang, Xiang Shen, Tiefeng Xu, and Qiuhua Nie "Optical loss and residual stress measurement of infrared chalcogenide glasses and analysis on its influencing factors", Proc. SPIE 8769, International Conference on Optics in Precision Engineering and Nanotechnology (icOPEN2013), 87693R (22 June 2013); https://doi.org/10.1117/12.2021071
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KEYWORDS
Infrared radiation

Infrared imaging

Chalcogenide glass

Statistical analysis

Annealing

Birefringence

Cameras

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