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Liquid-crystal microlens array with swing and adjusting focus and constructed by dual patterned ITO-electrodes

机译:液晶微透镜阵列,带有摆动和调节焦点,并通过双图案ITO电极构造

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Under the condition of existing intense turbulence, the object's wavefront may be severely distorted. So, the wavefront sensors based on the traditional microlens array (MLA) with a fixed focal length can not be used to measure the wavefront effectively. In order to obtain a larger measurement range and higher measurement accuracy, we propose a liquid-crystal microlens array (LCMLA) with needed ability of swing focus over the focal plane and further adjusting focal length which is constructed by a dual patterned ITO electrodes. The main structure of the LCMLA is divided into two layers, which are made of glass substrate with ITO transparent electrodes. The top layer of each liquid-crystal microlens consists of four rectangular electrodes, and the bottom layer is a circular electrode. In common optical measurements performed, the operations are carried out such as adding the same signal voltage over four electrodes of each microlens to adjust the focal length of the lens cell and adding a signal voltage with different RMS amplitude to adjust the focus position on the focal plane. Experiments show that the LCMLA developed by us demonstrate a desired focal length adjustable function and dynamic swing ability, so as to indicate that the method can be used not only to measure wavefront but also correct the wavefront with strong distortion.
机译:在现有强烈湍流的条件下,物体的波前可能会严重扭曲。因此,基于传统的微透镜阵列(MLA)的波前传感器不能用于有效地测量波前的测量波前。为了获得更大的测量范围和更高的测量精度,我们提出了一种液晶微透镜阵列(LCMLA),其具有所需的摆动聚焦在焦平面上并进一步调节由双图案ITO电极构成的焦距。 LCMLA的主要结构被分成两层,该层由具有ITO透明电极的玻璃基板制成。每个液晶微透镜的顶层由四个矩形电极组成,底层是圆形电极。在执行常见的光学测量中,执行操作,例如在每个微透镜的四个电极上添加相同的信号电压,以调整透镜电池的焦距并添加具有不同RMS幅度的信号电压,以调整焦点上的焦点位置飞机。实验表明,美国开发的LCMLA证明了所需的焦距可调节功能和动态挥杆能力,以表示该方法不仅可以测量波前,还可以使用强大的失真来校正波前。

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