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Lambert: a Novel Compact Calibration Solution forSuperior Telescope Flat Fielding

机译:Lambert:一种新型紧凑型校准解决方案,望远镜望远镜平面

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Traditional dome flat fielding methods typically have difficulties providing spatially uniform illumination and adequate flux over a telescopic instrument's entire spectral range. Traditional flat fielding screens, with an illumination source at least the size of the primary, can be difficult or impractical to mount and uniformly illuminate. The Las Cumbres Observatory Global Telescope Network (LCOGTN) will consist of approximately 50 robotic telescopes of 0.4 m, 1.0 m, and 2.0 m apertures with instrument bandwidth ranging from 350 -- 1800 nm. The network requires a robust flat-field solution to fit in compact enclosures. A scanning illuminated flat fielding bar, Lambert, was developed to meet these requirements. Illumination is from a linear arrangement of sources that are spatially dispersed by a narrow holographic or glass diffuser equal in length to the primary's diameter. We have investigated a linearly scanning, enclosure mounted, deployable unit, and a rotary scanning, telescope mounted unit. For complete visible-light bandwidth, a set of different color LEDs is used. The source density, scan speed, and variable intensity tunes the flux to the instrument wavelength and bandwidth. The Lambert flat fields in comparison to sky flats match pixel to pixel variations better than 0.5%; large scale illumination differences, which are stable and repeatable, are –1%.
机译:传统的圆顶平坦场地方法通常具有在伸缩仪器的整个光谱范围内提供空间均匀的照明和充足的助焊剂。传统的平面扇形屏幕,至少有初级尺寸的照明源,可以难以或不切实际地安装和均匀地亮起。 LAS CumBres天文台全球望远镜网络(LCOGTN)将由大约50个机器人望远镜由0.4米,1.0米和2.0米的孔径组成,仪器带宽范围为350-1800nm。网络需要强大的平局解决方案,以适合紧凑的外壳。开发了一种扫描照明平面灯,Lambert以满足这些要求。照明是从线性排列的光源,其在空间上分散在狭窄的全息或玻璃漫射器上的长度与初级直径相等。我们已经调查了线性扫描,外壳安装,可展开的单元和旋转扫描,望远镜安装单元。对于完整的可见光带宽,使用一组不同的颜色LED。源密度,扫描速度和可变强度将通量调谐到仪器波长和带宽。兰伯特平面与天空公寓相比,比像素变化相比,比0.5%更好;大规模照明差异,稳定且可重复,为-1%。

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