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Performances of an integral field unit for FOCAS on the Subaru telescope

机译:专注于底望远镜的整体场单位的性能

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We have developed an integral field unit (IFU) for the existing optical imaging spectrograph, Faint Object Camera And Spectrograph (FOCAS), on the Subaru telescope. FOCAS IFU finally saw a first light on March 2nd, 2018, and started the common use from 2019. In order to observe faint targets like distant galaxies, our IFU has a coarse sampling comparable to the best seeing size and high throughput. The field of view is 13.4 x 10.0 arcsec2 which is divided into 23 slices with the width of 0.435 arcsec. Our IFU has a slit separated by about 5.2 arcinin from an object field in order to simultaneously obtain a sky spectrum. We confirmed that the image quality is good enough for the 0.435-arcsec slice width and the best seeing size of 0.4 arcsec. Mean and median throughput of the IFU are respectively 85.0% and 87.3%. However some fields show lower throughput due to misalignment of the IFU optics and the worst throughput is 61.9% at one field corner. Flat fielding error is almost within ±3%, but worse errors are found at the low-throughput region. The worst error is 9% at the lowest throughput region.
机译:我们已经为现有的光学成像光谱仪,微弱的对象摄像机和光谱仪(焦点)开发了一个整体的现场单元(IFU),在斯巴鲁望远镜上。 Focas Ifu终于在2018年3月2日终于看到了第一盏灯,并开始了2019年的常见用途。为了观察到遥远的星系等微弱的目标,我们的IFU具有与最佳尺寸和高吞吐量相当的粗略采样。视野是13.4 x 10.0 arcsec2,其分为23个切片,宽度为0.435 arcsec。我们的IFU从对象字段中的分隔狭缝分隔在约5.2个Arcinin中,以便同时获得天空谱。我们确认图像质量足够好,对于0.435弧形切片宽度以及0.4 ArcSec的最佳景点。 IFU的平均值和中位数吞吐量分别为85.0%和87.3%。然而,由于IFU光学的未对准,某些字段显示出较低的吞吐量,并且在一个场上最差的吞吐量是61.9%。平面频率误差几乎在±3%范围内,但在低吞吐量区域中发现了更糟糕的错误。最坏的误差是最低吞吐量区域的9%。

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