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用于激光辐射测量的基于碳纳米管阵列的远红外热探测器。

Far infrared thermal detectors for laser radiometry using a carbon nanotube array.

作者信息

Lehman John H, Lee Bob, Grossman Erich N

机构信息

Physical Measurement Laboratory, National Institute of Standards and Technology, 325 Broadway, Boulder, Colorado 80305, USA.

出版信息

Appl Opt. 2011 Jul 20;50(21):4099-104. doi: 10.1364/AO.50.004099.

Abstract

We present a description of a 1.5 mm long, vertically aligned carbon nanotube array (VANTA) on a thermopile and separately on a pyroelectric detector. Three VANTA samples, having average lengths of 40 μm, 150 μm, and 1.5 mm were evaluated with respect to reflectance at a laser wavelength of 394 μm(760 GHz), and we found that the reflectance decreases substantially with increasing tube length, ranging from 0.38 to 0.23 to 0.01, respectively. The responsivity of the thermopile by electrical heating (98.4 mA/W) was equal to that by optical heating (98.0 mA/W) within the uncertainty of the measurement. We analyzed the frequency response and temporal response and found a thermal decay period of 500 ms, which is consistent with the specific heat of comparable VANTAs in the literature. The extremely low (0.01) reflectance of the 1.5 mm VANTAs and the fact that the array is readily transferable to the detector's surface is, to our knowledge, unprecedented.

摘要

我们展示了一种在热电堆以及单独在热释电探测器上的1.5毫米长的垂直排列碳纳米管阵列(VANTA)的描述。对三个平均长度分别为40微米、150微米和1.5毫米的VANTA样品,在激光波长394微米(760吉赫兹)下进行了反射率评估,我们发现反射率随着管长增加而大幅降低,分别从0.38降至0.23再降至0.01。在测量不确定度范围内,通过电加热(98.4毫安/瓦)时热电堆的响应度与通过光加热(98.0毫安/瓦)时相等。我们分析了频率响应和时间响应,发现热衰减周期为500毫秒,这与文献中可比VANTA的比热容一致。据我们所知,1.5毫米VANTA的极低(0.01)反射率以及该阵列易于转移到探测器表面这一事实是前所未有的。

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