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The Correction of Hartmann-Shack Sensor Measured Datum in Non-Normal Incidence Method

机译:非正态入射法中Hartmann-Shack传感器测量基准的校正

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摘要

In this paper, a deformable mirror is used to simulate mirror thermal distortion induced by laser, which deforms by different drive voltages loaded on it. The deformation is measured by a Hartmann-Shack sensor in the method of normal incidence and non-normal incidence respectively. In contrast to the true peak to valley value (PV value )of wavefront aberration which is measured in normal incidence method, the PV value of wavefront aberration measured in non-normal incidence method is less , the relative deviation between them increases with the increasing of the deformation, and closely relates with the incident angle. With the increasing of incident angle, the relative deviation increases significantly. In order to correct the deviation, the datum which is the PV value of wavefront aberration measured in non-normal incidence method divided by the cosine of the incident angle are analyzed, found to be good agreement with the true PV value of wavefront aberration , and the maximum relative deviation is less than 2%.
机译:在本文中,使用可变形反射镜来模拟由激光引起的反射镜热变形,该变形会因加载在其上的不同驱动电压而变形。通过Hartmann-Shack传感器分别以法向入射和非法向入射的方法测量变形。与用法线入射法测得的波前像差的真实峰谷值(PV值)相反,用非法线入射法测得的波前像差的PV值较小,两者之间的相对偏差随变形,并与入射角密切相关。随着入射角的增加,相对偏差明显增加。为了校正偏差,分析了用非法线入射法测得的波前像差PV值除以入射角的余弦后的数据,发现它与波前像差的真实PV值吻合良好,并且最大相对偏差小于2%。

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