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Spectral, spatial, and survivability evaluation of a flash-dried plasma-etched nanotube spray coating

机译:闪蒸的等离子体蚀刻纳米管喷涂涂层的光谱,空间和生存性评价

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摘要

We demonstrate improved manufacturability of spectrally flat detectors for visible to mid-infrared wavelengths by characterizing a carbon nanotube spray coating compatible with lithium tantalate and other thermal sensors. Compared against previous spray coatings, it demonstrated the highest responsivity yet attained due to both higher absorptivity and thermal diffusivity, while also being matured to a commercially available product. It demonstrated spectral nonuniformity from 300 nm to 12 mu m less than 1% with uncertainty (k = 2) under 0.4%. The spatial nonuniformity of the assembled sensor was less than 0.5% over the central half (4 mm) of the absorber. As with previous developments employing isotropic carbon nanotube coatings, the absorber surface was sufficiently robust to withstand cleaning by compressed air blast and survived repeated vacuum cycling without measurable impact upon responsivity.
机译:我们通过表征与钽酸锂和其他热传感器兼容的碳纳米管喷涂涂层来证明用于中红外波长的光谱扁平检测器的可明显性。 与先前的喷涂涂层相比,它证明了最高的响应度,尚能达到,既具有较高的吸收率和热扩散率,也达到了可商业上可获得的产品。 它表现出光谱不均匀性从300nm至12μm小于1%,不确定度(k = 2)0.4%。 组装传感器的空间不均匀性在吸收器的中间半(4mm)上小于0.5%。 与采用各向同性碳纳米管涂层的先前发展一样,吸收体表面足够稳定地通过压缩空气喷射耐受清洁,并在反应率的情况下存活重复的真空循环而不会产生可测量的冲击。

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