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Effect of ambient temperature on the measurement accuracy of Shack-Hartmann wavefront sensor

机译:环境温度对Shack-Hartmann波前传感器测量精度的影响

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The centroid estimation, wavefront reconstruction and environment (typically temperature) are the main error sources of the Shack-Hartmann wavefront sensor (SHWS). In this paper, theoretical and experimental studies are conducted to analyze the effect of ambient temperature on the measurement accuracy of SHWS. The spot arrays corresponding to ambient temperature varied from 20.5 to 24 degrees are obtained by using the thermal analysis features in ZEMAX. The wavefronts are then reconstructed by home-made software from these spot arrays. By using the wavefront diffracted by a single mode optical fiber and the SHWS, the experiment setup is built to verify the results obtained by theoretical analysis. The results obtained by theoretical analysis and experiments are coincident well. The variation of the wavefronts measured by SHWS will be smaller than 0.06 nm RMS if the ambient temperature variation is controlled within 0.1 degree. The range of temperature within ±2 degrees, the max wavefront deviation is 2.12 nm. This research will be of guiding significance to ambient temperature control in high precision wavefront error metrology by using SHWS.
机译:质心估计,波前重建和环境(通常是温度)是Shack-Hartmann波前传感器(SHWS)的主要误差来源。本文通过理论和实验研究来分析环境温度对SHWS测量精度的影响。通过使用ZEMAX中的热分析功能,可以获得与环境温度从20.5到24度不等的点阵列。然后用自制的软件从这些点阵中重建波前。通过使用单模光纤和SHWS衍射的波前,建立了实验装置以验证通过理论分析获得的结果。理论分析与实验结果吻合良好。如果将环境温度变化控制在0.1度以内,通过SHWS测量的波前变化将小于0.06 nm RMS。温度范围在±2度以内,最大波前偏差为2.12 nm。这项研究对使用SHWS进行高精度波前误差测量中的环境温度控制具有指导意义。

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