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Focal length calibration of an electrically tunable lens by digital holography

机译:通过数字全息术对电可调镜头的焦距进行校准

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摘要

The electrically tunable lens (ETL) is a novel current-controlled adaptive optical component which can continuously tune its focus in a specific range via changing its surface curvature. To quantitatively characterize its tuning power, here we assume the ETL to be a pure phase object and present a novel calibration method to dynamically measure its wavefront by use of digital holographic microscopy (DHM). The least squares method is then used to fit the radius of curvature of the wavefront. The focal length is obtained by substituting the radius into the Zemax model of the ETL. The behavior curve between the focal length of the ETL and its driven current is drawn, and a quadratic mathematic model is set up to characterize it. To verify our model, an ETL and offset lens combination is proposed and applied to ETL-based transport of intensity equation (TIE) phase retrieval microscopy. The experimental result demonstrates the calibration works well in TIE phase retrieval in comparison with the phase measured by DHM. (C) 2016 Optical Society of America
机译:电可调透镜(ETL)是一种新颖的电流控制型自适应光学组件,可以通过改变其表面曲率在特定范围内连续调焦。为了定量表征其调谐能力,在此我们假设ETL是纯相位对象,并提出一种新颖的校准方法,以通过使用数字全息显微镜(DHM)动态测量其波前。然后使用最小二乘法拟合波前的曲率半径。焦距是通过将半径代入ETL的Zemax模型获得的。绘制了ETL焦距与其驱动电流之间的行为曲线,并建立了二次数学模型对其进行表征。为了验证我们的模型,提出了一种ETL和偏移透镜的组合,并将其应用于基于ETL的强度方程(TIE)相转移显微镜的传输。实验结果表明,与DHM测量的相位相比,该校准在TIE相位检索中效果很好。 (C)2016美国眼镜学会

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