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Calculable blackbody radiation as a source for the determination of the spectral responsivity of THz detectors

机译:可计算的黑体辐射作为确定THz检测器光谱响应度的来源

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摘要

The spectral responsivity of the detector is important for the layout and quantitative interpretation of spectroscopic experiments. In the terahertz (THz) spectral range the knowledge of the total (integral) responsivity of a detector, as well as its spectral distribution, is often insufficient. PTB determined the spectral irradiance responsivity of two THz detectors, a pyroelectric DLATGS detector working at room temperature and a silicon-composite bolometer working at 4 K, in the wavelength range from 62 (mu)m (4.82 THz) to 1340 (mu)m (0.22 THz) with temperature radiation from blackbody radiators. Our approach is to use two THz cavity radiators in combination with THz bandpass filters to provide calculable spectral irradiances, according to Planck's law of radiation, at several wavelength bands in the THz spectral range. One cavity radiator is working at an adjustable fixed temperature in the range from 15 deg C to 90 deg C while the other cavity radiator operates at LN_(2) temperature. The radiation of the two cavity radiators is alternately imaged on the detector via a gold-coated chopper wheel. Hereby the background radiation is cancelled and also the necessary modulation for the lock-in detection is provided. The cavity of the high temperature radiator is coated with a dedicated paint providing high wall emissivity in the FIR and THz spectral range to ensure true blackbody behaviour of the radiator. The bottom of the low temperature radiator consists of THz absorber foam providing hereby also nearly blackbody behaviour. All individual filters and, additionally, the employed filter combinations are characterized for their transmittance in the entire wavelength range from 0.8 (mu)m to 1700 (mu)m to obtain a precise knowledge of the transmitted blackbody spectrum. The very reproducible results indicate that this setup allows a fast, simple and reliable determination of the spectral responsivity of THz detectors. In a next step, the uncertainty of this technique will be further evaluated and investigations will be extended to other types of detectors (e.g. LiTaO_(3) detectors and Golay cells).
机译:检测器的光谱响应度对于光谱实验的布局和定量解释很重要。在太赫兹(THz)光谱范围内,对检测器的总(积分)响应度及其光谱分布的了解通常不足。 PTB确定了两个THz检测器,在室温下工作的热释电DLATGS检测器和在4 K下工作的硅复合热辐射计的光谱辐射响应度,其波长范围为62μm(4.82 THz)至1340(μm)。黑体辐射器发出的温度辐射(0.22 THz)。我们的方法是将两个太赫兹腔辐射器与太赫兹带通滤波器结合使用,以根据普朗克辐射定律在太赫兹光谱范围内的几个波长带上提供可计算的光谱辐照度。一个空腔辐射器在15摄氏度至90摄氏度的可调固定温度下工作,而另一个空腔辐射器在LN_(2)温度下工作。两个空腔辐射器的辐射通过镀金的斩波轮交替成像在探测器上。由此消除了背景辐射,并且还提供了用于锁定检测的必要调制。高温散热器的腔体涂有专用涂料,可在FIR和THz光谱范围内提供高壁发射率,以确保散热器的真正黑体行为。低温散热器的底部由太赫兹吸收泡沫组成,因此也提供了几乎黑体的行为。对所有单独的滤光片以及所采用的滤光片组合的特征在于它们在从0.8μm到1700μm的整个波长范围内的透射率,以获得对透射黑体光谱的精确了解。非常可重复的结果表明,该设置可以快速,简单和可靠地确定THz检测器的光谱响应度。在下一步中,将进一步评估该技术的不确定性,并将调查范围扩展到其他类型的探测器(例如LiTaO_(3)探测器和Golay电池)。

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