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MEMS analog light processing: an enabling technology for adaptive optical phase control

机译:MEMS模拟光处理:自适应光学相位控制的启用技术

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Various applications in modern optics are demanding for Spatial Light Modulators (SLM) with a true analog light processing capability, e.g. the generation of arbitrary analog phase patterns for an adaptive optical phase control. For that purpose the Fraunhofer IPMS has developed a high-resolution MEMS Micro Mirror Array (MMA) with an integrated active-matrix CMOS address circuitry. The device provides 240 x 200 piston-type mirror elements with 40 μm pixel size, where each of them can be addressed and deflected independently at an 8bit height resolution with a vertical analog deflection range of up to 400 nm suitable for a 2pi phase modulation in the visible. Full user programmability and control is provided by a newly developed comfortable driver software for Windows XP based PCs supporting both a Graphical User Interface (GUI) for stand-alone operation with pre-defined data patterns as well as an open ActiveX programming interface for a direct data feed-through within a closed-loop environment. High-speed data communication is established by an IEEE1394a FireWire interface together with an electronic driving board performing the actual MMA programming and control at a maximum frame rate of up to 500 Hz. Successful application demonstrations have been given in eye aberration correction, coupling efficiency optimization into a monomode fiber, ultra-short laser pulse modulation and diffractive beam shaping. Besides a presentation of the basic device concept the paper will give an overview of the obtained results from these applications.
机译:现代光学中的各种应用对于具有真正的模拟光处理能力的空间光调制器(SLM)很大程度,例如,具有真正的模拟光处理能力。用于自适应光学相位控制的任意模拟相位模式的产生。为此目的,Fraunhofer IPMS开发了一种高分辨率MEMS微镜阵列(MMA),具有集成的主动矩阵CMOS地址电路。该装置提供240 x 200活塞式镜子元件,具有40μm像素尺寸,其中每个镜子元件可以在8位高度分辨率下独立寻址和偏转,垂直模拟偏转范围高达400nm,适用于2PI相位调制可见。完整的用户可编程性和控制由新开发的舒适的驱动程序软件提供用于基于Windows XP的PC,支持图形用户界面(GUI),用于独立操作,具有预定义的数据模式以及直接的Open ActiveX编程接口数据馈送在闭环环境中。 IEEE1394A FireWire接口建立高速数据通信以及以最大500Hz的最大帧速率执行实际MMA编程和控制的电子驱动板。已经在眼睛像差校正,耦合效率优化进入单模光纤,超短激光脉冲调制和衍射束整形的成功应用示范。除了介绍基本设备概念外,纸张将概述来自这些应用的所获得的结果。

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