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High-speed polarization imaging camera based on electrically driven PLZT waveplate and split focal plane

机译:基于电动PLZT波片和分焦面的高速偏振成像相机

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We present a Stokes polarization camera prototype based on an electro-optic ceramic (PLZT) as the key polarization component. Two pairs of electrodes are used to control the applied electric field and so the retardance and orientation of the induced waveplate. The active area of the PLZT element is 120×l20μm. To increase the effective active area, a 2D array PLZT is used. Imaging through this 2D array with reduced fill factor is achieved by splitting the focal plane. The focal plane is split by a microlenses array and interacts with each element of the ceramic array. A modified focal plane is reconstructed by another microlenses array. Digital image processing is used to recover the prime focal plane information. The technology used in this device (ceramic element, 2D array, imaging with split focal plane) as well as characterization of the ceramic element and preliminary results will be presented.
机译:我们提出了一种基于电光陶瓷(PLZT)作为主要偏振成分的Stokes偏振相机原型。使用两对电极来控制施加的电场,从而控制感应波片的延迟和方向。 PLZT元件的有效面积为120×120μm。为了增加有效有效面积,使用了二维阵列PLZT。通过分割焦平面,可以在填充率降低的情况下通过此2D阵列进行成像。焦平面由微透镜阵列分裂,并与陶瓷阵列的每个元素相互作用。修改后的焦平面由另一个微透镜阵列重建。数字图像处理用于恢复主要焦平面信息。将介绍该设备中使用的技术(陶瓷元件,2D阵列,分焦面成像)以及陶瓷元件的特性和初步结果。

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