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Cryogenic Near Infrared Spectropolarimeter for the Daniel K. Inouye Solar Telescope

机译:Daniel K. Inouye太阳能望远镜的近红外分光极靠近红外分光极附近

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The Cryogenic Near Infrared Spectropolarimeter for the Daniel K Inouye Solar Telescope is designed to measure polarized light from 0.5 to 5 μm. It uses an almost all reflective design for high throughput and an R2 echelle grating to achieve the required resolution of up to R= 100,000. The optics cooled to cryogenic temperatures reduce the thermal background allowing for IR observations of the faint solar corona. Both the spectrograph and its context imager use H2RG detector arrays with a newly designed controller to allow synchronized exposures at frame rates up to 10 Hz. All hardware has been built and tested and the key components met their design goals. 1) The cryogenic system uses mechanical closed cycle coolers which introduce vibrations. Our design uses a two stage approach with a floating mounting disk and flexible cold links to reduce these. The vibration amplitudes on all critical stages were measured and are smaller than 1 μm. 2) The grating stage of the spectrograph uses a double stack of harmonic drives and an optical encoder to provide sub-arcsecond resolution and a measured repeatability of better than 0.5 arcsec.
机译:Daniel K Inouye太阳能望远镜的低温近红外分光波镜近乎设计用于测量0.5至5μm的偏振光。它使用几乎所有反射设计,用于高吞吐量,R2梯栅光栅实现最高r = 100,000的所需分辨率。冷却至低温温度的光学器件减少了允许淡淡的太阳能电晕的IR观察的热背景。光谱仪及其上下文成像器都使用H2RG检测器阵列使用新设计的控制器,以允许在帧速率下同步曝光,高达10 Hz。所有硬件都已构建和测试,关键组件符合其设计目标。 1)低温系统使用引入振动的机械闭环冷却器。我们的设计采用了一种双级方法,具有浮动安装盘和柔性冷环,以减少这些。测量所有关键级上的振动幅度并小于1μm。 2)光谱仪的光栅阶段使用双堆谐波驱动器和光学编码器,以提供亚弧秒分辨率,并测得的重复性优于0.5 arcsec。

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