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A Kinematic, Flexure-based Mechanism for Precise, Parallel Motion for the Hertz Variable-delay Polarization Modulator (VPM)

机译:基于运动的基于挠性的机构,用于赫兹可变延迟偏振调制器(VPM)的精确平行运动

摘要

We describe the design of the linear motion stage for a Variable-delay Polarization Modulator (VPM) and of a grid flattener that has been built and integrated into the Hertz ground-based, submillimeter polarimeter. VPMs allow the modulation of a polarized source by controlling the phase difference between two linear, orthogonal polarizations. The size of the gap between a mirror and a very flat polarizing grid determines the amount of the phase difference. This gap must be parallel to better than 1% of the wavelength. A novel, kinematic, flexure-based mechanism is described that passively maintains the parallelism of the mirror and the grid to 1.5 pm over a 150 mm diameter, with a 400 pm throw. A single piezoceramic actuator is used to modulate the gap, and a capacitive sensor provides position feedback for closed-loop control. A simple device that ensures the planarity of the polarizing grid is also described. Engineering results from the deployment of this device in the Hertz instrument April 2006 at the Submillimeter Telescope Observatory (SMTO) in Arizona are presented.
机译:我们描述了可变延迟偏振调制器(VPM)的线性运动平台的设计,以及已构建并集成到基于Hertz地面的亚毫米偏振仪中的栅格平坦器的设计。 VPM通过控制两个线性正交极化之间的相位差,可以调制极化源。反射镜和非常平坦的偏振光栅之间的间隙大小决定了相位差的大小。该间隙必须平行于大于波长的1%。描述了一种新颖的,基于运动的,基于挠曲的机构,该机构在150 mm的直径上被动地将反射镜和栅格的平行度保持在1.5 pm,并抛出400 pm。单个压电致动器用于调节间隙,电容传感器提供位置反馈以进行闭环控制。还描述了一种确保偏振栅格的平面性的简单设备。介绍了2006年4月在亚利桑那州亚毫米望远镜天文台(SMTO)的Hertz仪器中部署该设备的工程结果。

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