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首页> 外文期刊>CERAMICS INTERNATIONAL >High refractive index dispersion of compositionally optimized Ge-Ga-Sb-S sulfide glass for use as molded lens in the long-wavelength infrared range
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High refractive index dispersion of compositionally optimized Ge-Ga-Sb-S sulfide glass for use as molded lens in the long-wavelength infrared range

机译:合成优化的Ge-Ga-Sb-S硫化物玻璃的高折射率分散,用作长波长红外范围内的模制透镜

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In an effort to endow Ge-Sb-S sulfide glass with capability to transmit the long -wavelength infrared (LWIR) photons as well as to possess highly dispersive refractive indexes over the LWIR spectral range, we have corn positionally adjusted ternary Ge-Sb-S glass prior to tuning quaternary Ge-X-Sb-S (X = Ga, Bi, In or Sn) glass. Among the constituent atoms of ternary Ge-Sb-S glass, Ge content turned out to exert the strongest influence not only on thermal and mechanical properties but also on infrared transmission edge. Specifically, glass transition temperature and Vickers hardness tended to be directly proportional to Ge content, but infrared transmission edge was blue-shifted upon increase of Ge content, simultaneously producing an additional multiphonon absorption peak at similar to 9 mu m. As such, Ge-Sb-S glass containing Ge atoms less than similar to 15 at% was considered to feature applicability in LWIR range, which on the other hand suffers from relatively poor thermal and mechanical properties. In our experimental attempts on quaternary sulfide glasses performed to mitigate such deteriorations, presence of relatively small amount of Ga appeared to be most effective among the elements employed in this study as the fourth constituent. Moreover, only Ga atoms improved thermal stability with significantly increasing crystallization temperature. Quaternary Ge-Ga-Sb-S glass compositionally optimized in this study was then verified to be much more dispersive than typical Se-based chalcogenide glasses in the LWIR region.
机译:努力赋予GE-SB-S硫化物玻璃具有能力传递长度波长红外(LWIR)光子以及在LWIR光谱范围内具有高度分散的折射率,我们有玉米位置调整三元GE-SB- S玻璃在调谐Quaternary GE-X-SB-S(X = Ga,Bi,In或Sn)玻璃之前​​。在三元GE-SB-S玻璃的组成原子中,GE内容不仅对热和机械性能而且对红外传输边缘产生最强的影响。具体而言,玻璃化转变温度和维氏硬度倾向于与GE含量成正比,但在GE含量的增加时,红外传输边缘是蓝色移位,同时产生类似于9μm的额外的多光吸收峰。这样,含有小于相似的GE-SB-S玻璃含有少于相似的GE原子,在LWIR范围内采用适用性,另一方面,热和机械性能相对较差。在我们进行季铵硫化物玻璃的实验尝试中,以减轻这种劣化,相对少量的Ga的存在似乎在本研究中作为第四组分中使用的元素中最有效的。此外,仅GA原子改善了热稳定性,具有显着增加的结晶温度。然后验证在该研究中组合于该研究的季族GE-GA-SB-S玻璃比LWIR区域中的基于典型的SE硫属化物玻璃更加分散。

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