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Extreme Adaptive Optics Testbed: Performance and Characterization of a 1024-MEMS Deformable Mirror

机译:极端自适应光学测试用品:1024-MEMS可变形镜的性能和表征

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We have demonstrated that a microelectrical mechanical systems (MEMS) deformable mirror can be flattened to < 1 nm RMS within controllable spatial frequencies over a 9.2-mm aperture making it a viable option for high-contrast adaptive optics systems (also known as Extreme Adaptive Optics). The Extreme Adaptive Optics Testbed at UC Santa Cruz is being used to investigate and develop technologies for high-contrast imaging, especially wavefront control. A phase shifting diffraction interferometer (PSDI) measures wavefront errors with sub-nm precision and accuracy for metrology and wavefront control. Consistent flattening, required testing and characterization of the individual actuator response, including the effects of dead and low-response actuators. Stability and repeatability of the MEMS devices was also tested. An error budget for MEMS closed loop performance will summarize MEMS characterization.
机译:我们已经证明,微电子机械系统(MEMS)可变形镜可以扁平到9.2mm光圈的可控空间频率内扁平到<1nm rms,使其成为高造影自适应光学系统的可行选择(也称为极端自适应光学器件)。在UC Santa Cruz的极端自适应光学测试用来调查和开发高对比度成像的技术,尤其是波前控制。相移衍射干涉仪(PSDI)测量具有SUB-NM精度和测量精度的波前误差,用于计量和波前控制。各个执行器响应的一致展平,所需的测试和表征,包括死亡和低响应致动器的效果。还测试了MEMS器件的稳定性和可重复性。 MEMS关闭循环性能的错误预算将总结MEMS表征。

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