首页> 外文期刊>Metrologia: International Journal of Scientific Metrology: = Internationale Zeitschrift fur Wissenschaftliche Metrologie: = Journal International de Metrologie Scientifique >High accuracy measurement of the absolute spectral responsivity of Ge and InGaAs trap detectors by direct calibration against an electrically calibrated cryogenic radiometer in the near-infrared
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High accuracy measurement of the absolute spectral responsivity of Ge and InGaAs trap detectors by direct calibration against an electrically calibrated cryogenic radiometer in the near-infrared

机译:通过对近红外电校准的低温辐射计进行直接校准,可以高精度测量Ge和InGaAs陷阱检测器的绝对光谱响应度

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This paper presents measurements of the absolute spectral responsivity of Ge and InGaAs trap detectors carried out by direct comparison with an electrically calibrated cryogenic radiometer (ECCR) in the near-infrared spectral range. Two tunable laser diodes were used as radiation sources operating between 1260 nm and 1360 nm and between 1460 nm and 1620 nm. The measurements of the cavity absorption and the Brewster-angled window transmission of the ECCR in these wavelength ranges are presented. A detailed analysis of the total measurement uncertainty is performed. The relative standard uncertainty of the responsivity measurement achieved is less than 5 X 10~(-4) for all wavelengths investigated. The measurements are also discussed in terms of external spectral quantum efficiency, which is up to 90percent for the Ge trap and up to 93percent for the InGaAs trap. The determined spectral responsivities are compared with the existing scale for spectral responsivity at the Physikalisch-Technische Bundesanstalt (the German National Metrology Institute) based on a thermopile detector. The deviation between the scales is at most +-0.15percent for the InGaAs trap detector and at most +-0.30percent for the Ge trap detector. The agreement is therefore within the combined standard uncertainties.
机译:本文介绍了通过与电校准的低温辐射计(ECCR)在近红外光谱范围内进行直接比较,对Ge和InGaAs陷阱检测器的绝对光谱响应度进行的测量。使用两个可调激光二极管作为工作在1260 nm和1360 nm之间以及1460 nm和1620 nm之间的辐射源。给出了在这些波长范围内ECCR的腔吸收和布鲁斯特角窗透射率的测量结果。对总测量不确定度进行了详细分析。对于所研究的所有波长,响应度测量的相对标准不确定度均小于5 X 10〜(-4)。还根据外部光谱量子效率对测量进行了讨论,Ge阱的光谱效率高达90%,InGaAs阱的光谱效率高达93%。将所确定的光谱响应度与基于热电堆检测器的Physikalisch-Technische Bundesanstalt(德国国家计量学会)的光谱响应度的现有标度进行比较。对于InGaAs陷阱检测器,标度之间的偏差最大为+ -0.15%,对于Ge陷阱检测器,最大标度为+ -0.30%。因此,该协议在合并的标准不确定性之内。

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