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Intensity influence on Gaussian beam laser based measurements using quadrant photodiodes

机译:强度对使用象限光电二极管进行的基于高斯光束激光的测量的影响

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摘要

In many measurement applications using quadrant photodiodes, the signal is normally obtained from integrated devices incorporating current-to-voltage amplifiers that provide the necessary difference out-puts with amplification. Quadrant photodiodes permit two-axis laser beam size and beam deflection determination. We show here that photodiode saturation, nonlinear characteristics of amplifying circuits, and voltage clipping features meant to prevent the output of a circuit from exceeding a predetermined voltage level to distort applied waveforms, play a significant role in measurement at low and high intensity levels, respectively. These two factors conspire to underestimate laser beam size measurement. A best-fit computation of the size versus power trend was found to permit satisfactory estimation of the beam size as well as the optimal laser power to be used. The intensity of light was also found to strongly affect the sensitivity of beam deflection measurements, in which a correction based on best-fit computation was deficient. In this case, calibration steps would be needed when light levels changed.
机译:在许多使用象限光电二极管的测量应用中,信号通常是从集成了电流到电压放大器的集成设备中获得的,该放大器提供必要的差分输出并放大。象限光电二极管允许确定两轴激光束的大小和束的偏转。我们在这里表明,光电二极管饱和度,放大电路的非线性特性和电压削波特性分别在低强度和高强度水平下的测量中起着重要作用,这些特征旨在防止电路的输出超过预定电压电平以扭曲施加的波形。 。这两个因素共同影响了激光束尺寸的测量。发现尺寸与功率趋势的最佳拟合可以令人满意地估计光束尺寸以及所使用的最佳激光功率。还发现光的强度强烈影响光束偏转测量的灵敏度,其中基于最佳拟合计算的校正不足。在这种情况下,当光线水平改变时,将需要校准步骤。

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