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Infrared transmission and refractive index dispersion of mixed-chalcogen Ge-Sb-S-Se glasses for use in molded lens applications

机译:混合性Ge-SB-S-SE玻璃用于模制透镜应用的红外传动和折射率分散

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摘要

In an effort to augment thermal and mechanical properties of ternary Ge-Sb-Se glass for use in molded lens applications, mixed-chalcogen Ge27.5Sb12.5SxSe60-x glasses have been investigated in this study with a particular attention paid to refractive index dispersion as well as infrared transmission edge. Changes in Vickers hardness, glass transition temperature, dilatometric softening temperature and thermal expansion coefficient are elucidated in terms of structural evolutions that sulfur induces. Infrared transmission edge blueshifts upon the addition of sulfur, which can be nicely interpreted in connection with average bond energy and molar mass of a given composition based on a postulation that this glass behaves as a single average harmonic oscillator in shaping multiphonon absorption. Refractive index at the long-wavelength infrared range becomes more dispersive with increasing sulfur content in these sulfur-selenide glasses, and thereby their dispersion can be pinpointed via adjusting S content. The Abbe diagram in the long-wavelength infrared region is extended towards the high-dispersion side, thus enhancing practicality of the chalcogenide glasses as in the form of lens and/or filter for the thermal imaging applications.
机译:在努力增加用于模塑镜片应用的三元GE-SB-SE玻璃的热和机械性能,在本研究中研究了混合硫属元GE27.5SB12.5SB12.5SXSE60-X玻璃,其特殊的注意力支付给折射率分散以及红外传输边缘。在硫诱导的结构中断方面,阐明了维氏硬度,玻璃化转变温度,膨胀温度和热膨胀系数的变化。添加硫的红外传动边缘蓝光,这可以基于该玻璃在成型多元吸收的单个谐波振荡器中表现为单个谐波振荡器的假设,这可以与给定的组合物的平均键合能和摩尔质量结合,这可以很好地解释。在这些硫 - 硒化玻璃中增加硫含量,长波长红外范围的折射率变得更加分散,从而可以通过调节S含量定位它们的分散体。长波长红外区域中的ABBE图朝向高分散侧延伸,从而以透镜形式的硫属化物玻璃的实用性提高,用于热成像应用。

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