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Frequency stability of combined wavefront corrective elements for adaptive optics

机译:自适应光学组合波前校正元件的频率稳定性

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In most adaptive optics systems, there are two elements that control wavefront correction, a fast steering mirror that corrects tip and tilt and a deformable element that corrects higher order aberrations. By mounting the deformable element onto the tip/tilt platform, complete wavefront compensation is now possible at one location in an optical system. The advantage of mounting a lightweight Micro Electro-Machined (MEM) deformable mirror on a tip/tilt stage is both fewer optical components and a simpler alignment process. The impact on the frequency stability of the of the MEM device on the tip/tilt platform is approximately 5% of the driving frequency.
机译:在大多数自适应光学系统中,有两个控制波前校正的元件,一个用于校正尖端和倾斜的快速转向镜,以及一个用于校正高阶像差的可变形元件。通过将可变形元件安装到尖端/倾斜平台上,现在可以在光学系统中的一个位置进行完整的波前补偿。在尖端/倾斜平台上安装轻型微电子可变形(MEM)可变形反射镜的优点是光学组件更少,对准过程更简单。对尖端/倾斜平台上的MEM设备的频率稳定性的影响约为驱动频率的5%。

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