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基于单色仪的光谱响应度测量中带宽效应的研究。

Study of bandwidth effects in monochromator-based spectral responsivity measurements.

作者信息

Boivin Louis-Philippe

机构信息

National Research Council of Canada, Institute for National Measurement Standards, Ottawa.

出版信息

Appl Opt. 2002 Apr 1;41(10):1929-35. doi: 10.1364/ao.41.001929.

Abstract

The errors caused by monochromator bandwidth in spectral responsivity measurements with a monochromator-based apparatus are discussed. Bandwidth effects are not negligible in high-accuracy cryogenic radiometer-based calibrations. A simple numerical method is used to calculate bandwidth effects for different types of detectors, monochromator slit scattering functions, and monochromator output spectral distributions. The method uses low-order Lagrange polynomials fitted segmentwise to measured spectral responsivity and monochromator spectral distribution data in order to make the calculations. It is shown that the shape of the slit function has only a small influence on the bandwidth errors, whereas the output spectral distribution of the monochromator can strongly affect bandwidth errors. It is also shown that in most cases the magnitude of bandwidth effects will vary as the square of the bandwidth. Bandwidth error calculations are presented for various types of detectors (silicon, silicon trap, germanium, InGaAs), for a V(X) detector, and for a typical filter radiometer. A comparison is made between calculated and measured bandwidth effects to validate the method used. In general, calculations of bandwidth effects will be mostly useful for determining uncertainties associated with monochromator bandwidth in spectral responsivity measurements; however, in certain cases the calculations can be used to apply corrections for such effects.

摘要

讨论了基于单色仪的仪器在光谱响应度测量中由单色仪带宽引起的误差。在基于高精度低温辐射计的校准中,带宽效应不可忽略。使用一种简单的数值方法来计算不同类型探测器、单色仪狭缝散射函数和单色仪输出光谱分布的带宽效应。该方法使用逐段拟合到测量的光谱响应度和单色仪光谱分布数据的低阶拉格朗日多项式来进行计算。结果表明,狭缝函数的形状对带宽误差影响较小,而单色仪的输出光谱分布会强烈影响带宽误差。还表明,在大多数情况下,带宽效应的大小将随带宽的平方而变化。给出了各种类型探测器(硅、硅陷阱、锗、铟镓砷)、V(X)探测器和典型滤光片辐射计的带宽误差计算结果。对计算出的和测量到的带宽效应进行了比较,以验证所使用的方法。一般来说,带宽效应的计算对于确定光谱响应度测量中与单色仪带宽相关的不确定度最为有用;然而,在某些情况下,这些计算可用于对这种效应进行校正。

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