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首页> 外文期刊>Microwave and optical technology letters >INDUCED ABERRATIONS BY COMBINATIVE CONVEX/CONCAVE INTERFACES OF REFRACTIVE-INDEX-MISMATCH AND CAPABILITY OF ADAPTIVE OPTICS CORRECTION
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INDUCED ABERRATIONS BY COMBINATIVE CONVEX/CONCAVE INTERFACES OF REFRACTIVE-INDEX-MISMATCH AND CAPABILITY OF ADAPTIVE OPTICS CORRECTION

机译:折射/折射率错位的组合凸/凹界面和自适应光学矫正的能力引起的畸变

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Adjustable fluidic adaptive lenses have been extensively studied because of the advantage of changing the geometric shape or refractive index without any mechanical moving parts. However, the induced aberrations were rarely discussed before. We address this issue by first clarifying the aberrations experimentally due to injected fluidic volumes. Experimental results show that under the injected fluidic volume of 0.1 ml, the main aberrations come from Z_1 (piston), Z_2 (tip), and Z_5 (defocus) and Zernike coefficients are 0.97, 0.31, and 1.31μm, respectively. In what follows, a series of tests specifically designed to explore the convex/concave interfaces and refractive-index-mismatch (RIM). Furthermore, we demonstrate the capability of adaptive optics (AO) correction on aberrations induced by combinative effects of multiple layers with convex/concave interfaces and RIM. A microelectromechanical system (MEMS) deformable mirror (DM) with 140 actuators was used in conjunction with Shack-Hartmann wavefront sensor to realize the experimentation. In particular, we consider the aberration introduced by interfaces of RIM between water/oil and glass. After AO correction, we can improve wavefront with root mean square (RMS) of 2.17-0.17μm for an interface between water and glass. As for the interface between oil and glass, we are capable of improving RMS of 0.24-0.10μm.
机译:由于无需任何机械运动部件即可改变几何形状或折射率的优势,可调节流体自适应透镜已得到广泛研究。但是,诱发像差以前很少讨论。我们首先通过澄清注入的流体量引起的像差来解决这个问题。实验结果表明,在注入的流体量为0.1 ml时,主要像差来自Z_1(活塞),Z_2(尖端)和Z_5(散焦),Zernike系数分别为0.97、0.31和1.31μm。接下来,进行了一系列专门设计用于探索凸/凹界面和折射率不匹配(RIM)的测试。此外,我们证明了自适应光学(AO)校正由多层具有凸/凹界面和RIM的组合效应引起的像差的能力。将具有140个执行器的微机电系统(MEMS)可变形反射镜(DM)与Shack-Hartmann波前传感器结合使用以实现实验。特别是,我们考虑了RIM在水/油和玻璃之间的界面引入的像差。经过AO校正后,我们可以改善水与玻璃之间的界面的波前,均方根(RMS)为2.17-0.17μm。关于油和玻璃之间的界面,我们能够将RMS提高0.24-0.10μm。

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