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Design of dual Beam multi-wavelength UV-visible absorbance detectors based on CCD

机译:基于CCD的双光束多波长紫外可见吸收检测器的设计

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摘要

Because the general multi-wavelength UV-Visible absorbance detector cannot avoid the noise and drift resulting from the intensity fluctuation of the light source,a dual beam multi-wavelength UV-Visible detector based on CCD was designed. The ray of light source is divided into a signal ray and a reference ray by the beam splitter after it passes through the chopper. The signal ray shines into the sample cell. The signal ray passing through the sample cell falls onto a concave mirror which focuses it onto a slot that is imaged on one portion of CCD by a concave grating. The reference ray is imaged on the other portion of CCD by the concave grating after the slot. The signal spectrum,the reference spectrum and the dark current of CCD can be measured on the same CCD under the cooperation of the optical system and accessorial circuits. The real-time compensation for the signal spectrum by using the reference spectrum and the dark current of CCD can effectively depress the noise and drift of the detector. The short-term noise is 10~(-5)AU and the drift is 10~(-4)AU/h.
机译:由于普通的多波长紫外可见吸收检测器无法避免光源强度波动带来的噪声和漂移,因此设计了一种基于CCD的双光束多波长紫外可见检测器。光束经过斩波器后,光束由分束器分为信号射线和参考射线。信号射线照射到样品池中。穿过样品池的信号射线落到凹面镜上,该凹面镜将其聚焦到一个槽上,该槽由凹面光栅成像在CCD的一部分上。缝隙之后,参考光线通过凹面光栅在CCD的另一部分成像。在光学系统和辅助电路的配合下,可以在同一张CCD上测量CCD的信号光谱,参考光谱和暗电流。利用参考光谱和CCD的暗电流对信号光谱进行实时补偿,可以有效抑制探测器的噪声和漂移。短期噪声为10〜(-5)AU / h,漂移为10〜(-4)AU / h。

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