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Evaluation of a pyroelectric detector with a carbon multiwalled nanotube black coating in the infrared

机译:红外热镀碳纳米管黑色涂层热释电探测器的评估

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The performance of a pyroelectric detector with a carbon multiwalled nanotube coating was evaluated in the 0.9-14 (mu)m wavelength range. The relative spectral responsivity of this detector was shown to be flat over most of the wavelength range examined, and the spectral flatness was shown to be comparable to the best infrared black coatings currently available. This finding is promising because black coatings with spectrally flat absorbance profiles are usually associated with the highest absorbance values. The performance of the detector (in terms of noise equivalent power and specific detectivity) was limited by the very thick (250 (mu)m thick) LiNbO_(3) pyroelectric crystal onto which the coating was deposited. The responsivity of this detector was shown to be linear in the 0.06-2.8 mW radiant power range, and its spatial uniformity was comparable to that of other pyroelectric detectors that use different types of black coating. The carbon nanotube coatings were reported to be much more durable than other infrared black coatings, such as metal blacks, that are commonly used to coat thermal detectors in the infrared. This, in combination with their excellent spectral flatness, suggests that carbon nanotube coatings appear extremely promising for thermal detection applications in the infrared.
机译:在0.9-14μm的波长范围内评价了具有碳多壁纳米管涂层的热电探测器的性能。该检测器的相对光谱响应度在所检查的大部分波长范围内均显示为平坦,并且光谱平坦度可与目前可用的最佳红外黑涂层相媲美。这一发现很有希望,因为具有光谱平坦的吸光度分布的黑色涂层通常与最高的吸光度值相关。检测器的性能(在噪声等效功率和比检测率方面)受到非常厚(250微米厚)的LiNbO_(3)热电晶体的限制,涂层沉积在该晶体上。该探测器的响应度在0.06-2.8 mW辐射功率范围内呈线性关系,其空间均匀性可与使用不同类型黑色涂层的其他热电探测器相媲美。据报道,碳纳米管涂层比通常用于涂覆红外热探测器的其他红外黑涂层(例如金属黑)要耐用得多。结合其出色的光谱平坦度,这表明碳纳米管涂层对于红外热检测应用而言似乎非常有前途。

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