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Development of tellurium oxide and lead-bismuth oxide glasses for mid-wave infra-red transmission optics

机译:中波红外传输光学器件用氧化碲和氧化铅铋玻璃的开发

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Heavy metal oxide glasses exhibiting high transmission in the Mid-Wave Infra-Red (MWIR) spectrum are often difficult to manufacture in large sizes with optimized physical and optical properties. In this work, we researched and developed improved tellurium-zinc-barium and lead-bismuth-gallium heavy metal oxide glasses for use in the manufacture of fiber optics, optical components and laser gain materials. Two glass families were investigated, one based upon tellurium and another based on lead-bismuth. Glass compositions were optimized for stability and high transmission in the MWIR. Targeted glass specifications included low hydroxyl concentration, extended MWIR transmission window, and high resistance against devitrification upon heating. Work included the processing of high purity raw materials, melting under controlled dry Redox balanced atmosphere, finning, casting and annealing. Batch melts as large as 4 kilograms were sprue cast into aluminum and stainless steel molds or temperature controlled bronze tube with mechanical bait. Small (100g) test melts were typically processed in-situ in a 5%Au795%Pt° crucible. Our group manufactured and evaluated over 100 different experimental heavy metal glass compositions during a two year period. A wide range of glass melting, fining, casting techniques and experimental protocols were employed. MWIR glass applications include remote sensing, directional infrared counter measures, detection of explosives and chemical warfare agents, laser detection tracking and ranging, range gated imaging and spectroscopy. Enhanced long range mid-infrared sensor performance is optimized when operating in the atmospheric windows from ~ 2.0 to 2.4μm, ~3.5 to 4.3μm and ~ 4.5 to 5.0μm.
机译:在中波红外(MWIR)光谱中表现出高透射率的重金属氧化物玻璃通常难以以具有最佳物理和光学性能的大尺寸制造。在这项工作中,我们研究和开发了用于制造光纤,光学组件和激光增益材料的改进的碲锌锌钡和铅铋镓镓重金属氧化物玻璃。研究了两个玻璃族,一个基于碲,另一个基于铅铋。对玻璃成分进行了优化,以确保其在MWIR中的稳定性和高透射率。目标玻璃规格包括低羟基浓度,延长的MWIR透射范围和对加热时失透的高耐受性。工作包括高纯度原材料的加工,在受控的干燥氧化还原平衡气氛下熔化,精炼,铸造和退火。将重达4千克的批料熔体浇铸到铝和不锈钢模具或带有机械诱饵的温控青铜管中。小量(100克)测试熔体通常在5%Au795%Pt°坩埚中进行原位处理。我们的小组在两年内制造并评估了100多种不同的实验性重金属玻璃成分。采用了各种各样的玻璃熔化,澄清,铸造技术和实验方案。 MWIR玻璃的应用包括遥感,定向红外对策,爆炸物和化学战剂的检测,激光检测跟踪和测距,距离门成像和光谱学。当在约2.0至2.4μm,约3.5至4.3μm和约4.5至5.0μm的大气窗口中工作时,可以优化增强的远距离中红外传感器性能。

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