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Improving Optical Measurements: Non-Linearity Compensation of Compact Charge-Coupled Device (CCD) Spectrometers

机译:改善光学测量:紧凑型电荷耦合器件(CCD)光谱仪的非线性补偿

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摘要

Charge-coupled device (CCD) spectrometers are widely used as detectors in analytical laboratory instruments and as sensors for in situ optical measurements. However, as the applications become more complex, the physical and electronic limits of the CCD spectrometers may restrict their applicability. The errors due to dark currents, temperature variations, and blooming can be readily corrected. However, a correction for uncertainty of integration time and wavelength calibration is typically lacking in most devices, and detector non-linearity may distort the signal by up to 5% for some measurements. Here, we propose a simple correction method to compensate for non-linearity errors in optical measurements where compact CCD spectrometers are used. The results indicate that the error due to the non-linearity of a spectrometer can be reduced from several hundred counts to about 40 counts if the proposed correction function is applied.
机译:电荷耦合器件(CCD)光谱仪广泛用作分析实验室仪器中的检测器和原位光学测量的传感器。但是,随着应用变得越来越复杂,CCD光谱仪的物理和电子限制可能会限制其适用性。由暗电流,温度变化和起霜引起的误差可以很容易地纠正。但是,大多数设备通常都缺乏对积分时间和波长校准不确定性的校正,并且对于某些测量,检测器的非线性可能会使信号失真高达5%。在这里,我们提出一种简单的校正方法,以补偿使用紧凑型CCD光谱仪的光学测量中的非线性误差。结果表明,如果应用建议的校正函数,则由于光谱仪的非线性引起的误差可以从几百个计数减少到约40个计数。

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