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A cryogenic steering mirror for source selection in multi-integral-field spectrographs

机译:用于多积分场光谱仪的源选择的低温转向镜

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Multi-integral-field spectrographs for near-infrared observations require a large number of complex cryogenic mechanisms to select source images in the telescope field of view which are then re-format on the spectrograph entrance slit. Source selection can be achieved in several ways, but the two methods most adequate for large fields and cryogenic environment are positioning of an optical element in the telescope field to pick off the source image, or steering a mirror located in a pupil image to deflect the light from a source into relay optics. The first solution permits high flexibility in source selection at the cost of large mechanical travels. The second solution limits the source selection to one per pre-defined sub-field, but gets by with small mirror tilts. Higher flexibility can be regained for the second solution by assigning different sub-field sizes to the steering mirrors in the central and in the peripheral areas of the field of view. We present a solution for a cryogenic steering mirror unit with a mirror diameter of about 20 mm and tilt angles of a few degrees, appropriate for source selection in a 1 arc minute field of an 8 m class telescope. The gimbaled mirror can be tilted about two perpendicular axes in the tangential plane of the mirror apex. The mirror is driven by two Nanomotors, and the motor strokes are measured by LVDTs. Motors and sensors are specified for operation at LHe temperatures.
机译:用于近红外观测的多积分场光谱仪需要大量复杂的低温机制,以在望远镜视野中选择源图像,然后在光谱仪入口狭缝上重新格式化。源选择可以通过多种方式实现,但是这两种方法对于大型领域最适合和低温环境是在望远镜场中的光学元件定位,以拾取源图像,或者转向位于瞳孔图像中的镜子以偏转从源头的光线进入继电器光学。第一种解决方案允许在大型机械旅行成本下源选择的高灵活性。第二个解决方案将源选择限制为每个预定义的子字段的源选择,但通过小镜子倾斜获取。通过将不同的子场尺寸分配给中央场和视野的外围区域中的转向镜,可以通过将不同的子场大小恢复为第二解决方案来恢复更高的灵活性。我们为低温转向镜单元提出了一种镜面直径,镜子直径约为20mm,倾斜角度为几度,适合于8米级望远镜的1个弧形分钟场中的源选择。可以在镜子顶点的切向平面中大约两个垂直轴倾斜的万能镜子。镜子由两个纳米电机驱动,并且通过LVDT测量电机冲程。电动机和传感器在LHE温度下进行操作。

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