论文标题

南部非洲大型望远镜的缝隙面膜整体场单元

Slit Mask Integral Field Units for the Southern African Large Telescope

论文作者

Chattopadhyay, Sabyasachi, Bershady, Matthew A., Wolf, Marsha J., Smith, Michael P.

论文摘要

在Robert Stobie光谱仪的可见手臂和未来的红色手臂的SAAO光纤 - LAB中,正在建造两个纤维整体场单元(IFU)。每个IFU都位于其自己的缝隙面罩盒中,被称为缝隙面罩IFU(SMI)。它们将在2022年提供一段​​时间。较小的200微米纤维IFU具有309 x 0.9 ARCSEC直径的空间元件,覆盖了18 x 23 Arcsec的伸长六角形足迹。较大的400微米纤维IFU具有178 x 1.8 ARCSEC直径的空间元件,覆盖21 x 44 arcsec的天线面积。在这两种情况下,在初级阵列的两侧,有两组13个纤维被大约50个Arcsec弥补,以样品天空采样。 1.8和0.9 ARCSEC空间分辨率SMI在低分辨率模式下在Hα波长下分别提供1200和2400的中位光谱分辨率,覆盖320至740 nm带通道。在更高的光栅角度,SMI将分别用400和200微米芯纤维提供高达5000和10000的光谱分辨率。未来的红臂将以同一口味IFUS的中位分辨率为3000/6000的中位分辨率,同时将波长覆盖范围扩展到900 nm。 SMI与盐焦平面上现有的远程盒子的插入方式相同。棱柱形折叠镜像将焦平面引导到纤维IFU中,然后在将纤维在盒式盒子内180摄氏度路由并格式化为伪斜线后,然后回到RSS准直仪中。折叠棱镜确保光谱仪的准仪继续看到相同的焦平面。在本文中,我们描述了缝面膜ifus的设计,制造,组装和表征。

Two fibre integral field units (IFU) are being built in the SAAO fibre-lab for the Robert Stobie Spectrograph's visible arm and the future red arm. Each IFU sits in its own slit-mask cassette and is referred to as a slit-mask IFU (SMI). They will be available some time in 2022. The smaller, 200 micron fibre IFU has 309 X 0.9 arcsec diameter spatial elements covering an elongated hexagonal footprint of 18 X 23 arcsec. The larger, 400 micron fibre IFU has 178 X 1.8 arcsec diameter spatial elements covering an on-sky area of 21 X 44 arcsec. In both cases there are two groups of 13 fibres offset by roughly 50 arcsec on either side of the primary array to sample sky. The 1.8 and 0.9 arcsec spatial resolution SMIs provide median spectral resolution of 1200 and 2400 respectively at H alpha wavelengths in the low resolution mode covering 320 to 740 nm bandpass. At a higher grating angle the SMI will deliver spectral resolution up to 5000 and 10000 with 400 and 200 micron core fibre respectively. A future red-arm will extend the simultaneous wavelength coverage up to 900 nm at a median resolution of 3000/6000 for the same flavors of IFUs. SMIs are inserted in the same fashion as the existing longslit cassettes at the SALT focal plane. Prismatic fold mirrors direct the focal plane into the fibre IFU and then back into the RSS collimator after the fibres are routed 180 deg within the cassette and formatted into a pseudo-slit. Fold prisms ensure that the spectrograph collimator continues to see the same focal plane. In this paper we describe the design, fabrication, assembly and characterization of Slit Mask IFUs.

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