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Low-NEP pyroelectric detectors for calibration of UV and IR sources and detectors

机译:低NEP热电探测器,用于校准UV和IR源和探测器

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Pyroelectric radiometers with spectrally constant response have been developed at NIST with the cooperation of a few detector manufacturers. The new devices have noise-equivalent-power (NEP) values less than 1 nW/Hz~(1/2) sufficiently low for use at the output of regular monochromators. Their response flatness is an order of magnitude better than that of filtered Si detectors and can be used to realize simple and low-uncertainty responsivity scales for the UV and IR wavelength ranges. For the first time, the UV irradiance responsivity of a pyroelectric detector has been determined. Based on spectral reflectance measurements of the black coating of the pyroelectric detector, the relative spectral response was determined between 0.25 μm and 30 μm. The relative response was then converted into spectral power and irradiance responsivities using absolute tie points from a silicon-trap-detector in the VIS range. In addition to the UV irradiance responsivity scale realization, the flat response between 1.6 urn and 2.6 μm was utilized and a constant irradiance responsivity was realized and applied as a reference scale for the Spectral Irradiance and Radiance Responsivity Calibrations with Uniform Sources (SIRCUS) facility of NIST. The spectral power responsivity of the low-NEP pyroelectric detector is the internal standard of the NIST VIS-IR detector calibration facility for the 0.6 μm to 24 μm wavelength range. The pyroelectric standard is used to calibrate other types of detectors for spectral responsivity using detector substitution. The flat-response interval of the pyroelectric standard, calibrated for irradiance responsivity, was also used to measure the integrated irradiance from UV LED sources without using any source standard. The broadband radiometric measurements can be applied to IR LEDs emitting low fluxes between 750 nm and 4300 nm. All pyroelectric detector based calibrations were performed with expanded uncertainties of about 2 % (k=2).
机译:在一些探测器制造商的合作下,NIST已开发出具有光谱恒定响应的热释电辐射计。新器件的等效噪声功率(NEP)值小于1 nW / Hz〜(1/2),足以在常规单色仪的输出端使用。它们的响应平坦度比滤波的Si检测器好一个数量级,可用于实现针对UV和IR波长范围的简单和低不确定度的响应度标度。首次确定了热释电探测器的紫外线辐射响应度。基于热释电探测器黑色涂层的光谱反射率测量,相对光谱响应确定为0.25μm至30μm。然后,使用来自VIS范围内硅陷阱检测器的绝对联系点,将相对响应转换为光谱功率和辐照度响应。除了实现UV辐照度响应度标度外,还利用了1.6 um和2.6μm之间的平坦响应,并实现了恒定的辐照度响应度,并将其用作具有标准光源的光谱辐照度和辐射度响应度标定(SIRCUS)的参考标度。 NIST。低NEP热释电检测器的光谱功率响应度是NIST VIS-IR检测器校准工具的内部标准,适用于0.6μm至24μm的波长范围。热电标准品用于使用检测器替代品来校准其他类型的检测器,以实现光谱响应。对于辐照度响应度进行校准的热电标准品的平坦响应时间间隔,也可用于测量来自UV LED光源的积分辐照度,而无需使用任何光源标准品。宽带辐射测量可以应用于发射750 nm至4300 nm之间低通量的IR LED。所有基于热释电检测器的校准均以约2%(k = 2)的扩展不确定度进行。

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