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Examination of laser-induced heating on multi-component chalcogenide glass

机译:检验多组分硫属化物玻璃上的激光诱导加热

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Next-generation infrared (IR) optical components based on chalcogenide glasses (ChGs) may include structures which benefit from the enhanced optical function offered by spatially modifying regions with a nanocrystalline phase. Such modification may be envisioned if the means by which such spatial control of crystallization can be determined using the advantages offered through three-dimensional direct laser write (DLW) processes. While ChGs are well known to have good transparency in the IR, they typically possess lower thresholds for photo- and thermally- induced property changes as compared to other glasses such as silicates. Such low thresholds can result in material responses that include photo-expansion, large thermo-optic increases, mechanical property changes, photo-induced crystallization, and ablation. The present study examines changes in ChG material response realized by exposing the material to different laser irradiation conditions in order to understand the effects of these conditions on such material property changes. Thresholds for photo-expansion and ablation were studied by varying the exposure time and power with sub-bandgap illumination and evidence of laser induced phase change were examined. Simulations were carried out to estimate the temperature increase from the irradiation and the tolerances and stability of the calculations were examined. The models suggest that the processes may have components that are non-thermal in nature.
机译:基于硫族化物玻璃(ChGs)的下一代红外(IR)光学组件可能包括结构,这些结构得益于通过空间修饰具有纳米晶相的区域所提供的增强的光学功能。如果可以使用通过三维直接激光写入(DLW)工艺提供的优点来确定这种结晶空间控制的方法,则可以设想这种修改。尽管众所周知,ChGs在IR中具有良好的透明性,但与其他玻璃(如硅酸盐)相比,它们通常具有较低的光致和热致属性变化阈值。如此低的阈值可能导致材料响应,包括光膨胀,热光大幅增加,机械性能变化,光致结晶和烧蚀。本研究检查了ChG材料响应的变化,该变化是通过将材料暴露于不​​同的激光辐照条件来实现的,以便了解这些条件对这种材料特性变化的影响。通过亚带隙照明改变曝光时间和功率来研究光膨胀和烧蚀的阈值,并检查了激光诱导的相变的证据。进行了模拟以估计辐照引起的温度升高,并检查了计算的公差和稳定性。这些模型表明,这些过程可能具有非热性质的成分。

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