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Error Induced by the Optical Path of a High Accuracy and High Bandwidth Optical Current Measurement System

机译:高精度,高带宽光电流测量系统的光路引起的误差

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Birefringence and optical losses in the optical sensor head of a Faraday effect based, high accuracy and high bandwidth current measurement system lead to changes of the polarisation state and orientation. These changes, if not properly determined and calibrated, lead to systematic measurement errors. Therefore, a calibration method for the optical current measurement system focusing on pulse current applications is proposed. The procedure is based on a zero-current measurement and a full (Stokes) polarimeter. It determines the full polarisation state and orientation of a beam propagating through the optical system. The calibration method then allows to determine the parasitic linear birefringence caused by any subsequent optical element in the system. Eventually, an error analysis characterising the potential error reduction by the proposed calibration method is conducted. Further, the additionally introduced error sources caused by the full polarimeter approach are characterised.
机译:基于法拉第效应的高精度和高带宽电流测量系统的光学传感器头中的双折射和光损耗会导致偏振态和取向发生变化。这些变化,如果不能正确确定和校准,将导致系统的测量误差。因此,提出了一种针对脉冲电流应用的光电流测量系统的校准方法。该程序基于零电流测量和全(斯托克斯)旋光仪。它确定通过光学系统传播的光束的全偏振状态和方向。然后,该校准方法允许确定由系统中任何后续光学元件引起的寄生线性双折射。最终,进行了一种误差分析,该误差分析表征了通过所提出的校准方法可减少的潜在误差。此外,表征了由全偏振计方法引起的另外引入的误差源。

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