论文标题

Emir,GTC的近红外摄像头和多对象光谱仪

EMIR, the near-infrared camera and multi-object spectrograph for the GTC

论文作者

Garzón, F., Balcells, M., Gallego, J., Gry, C., Guzmán, R., Hammersley, P., Herrero, A., Muñoz-Tuñón, C., Pelló, R., Prieto, M., Bourrec, É., Cabello, C., Cardiel, N., González-Fernández, C., Laporte, N., Milliard, B., Pascual, S., Patrick, L. R., Patrón, J., Ramírez-Alegría, S., Streblyanska, A.

论文摘要

我们提出了埃米尔(Emir),这是一个强大的近红外(NIR)摄像头和10.4 m GTC的鼻腔焦点上安装的多物体光谱仪(MOS)。埃米尔(Emir)于2016年中被委托,并作为普通用户仪器提供。它在成像模式下的6.67x6.67平方弧线的视野(FOV)上提供了0.9至2.5 $μm$的光谱覆盖范围,在光谱模式下为6.67x4平方的arcmin。由于位于低温室内的机器人可配置的冷缝面膜系统,埃米尔(Emir)最多可提供53个不同物体的光谱,从而可以快速重新配置观测面罩。成像模式是通过将所有条移动到FOV外,然后在GTC焦点表面留空空间来实现的。分散套件拥有三个大型伪麦格主义,由高效速率蚀刻的统治变速器的结合组合,它们夹在两个相同的ZNSE PRISM之间,再加上一种标准的复制Grism。这些分散的单元提供了一个大气窗口$ j,h,k $的光谱记录,分别具有5000、4250、4000的解决功能,其名义缝隙宽度为0.6 \ arcsec,以及组合的bands $ yj $或$ yj $或$ hk $,也可以单张镜头,也是$ haw $ $ hawai $ $ \ awai $ \ awai $ \ awai $ \ hawaien2。向信号添加噪声的不稳定性已被新的夏威夷检测器阵列所取代,目前正在IAC进行测试。本文介绍了乐器的最显着特征,重点是其观察功能和可配置的缝隙单元的功能。还显示了样本早期科学数据。

We present EMIR, a powerful near-infrared (NIR) camera and multi-object spectrograph (MOS) installed at the Nasmyth focus of the 10.4 m GTC. EMIR was commissioned in mid-2016 and is offered as a common-user instrument. It provides spectral coverage of 0.9 to 2.5 $μm$ over a field of view (FOV) of 6.67x6.67 squared arcmin in imaging mode, and 6.67x4 squared arcmin in spectroscopy. EMIR delivers up to 53 spectra of different objects thanks to a robotic configurable cold slit mask system that is located inside the cryogenic chamber, allowing rapid reconfiguration of the observing mask. The imaging mode is attained by moving all bars outside the FOV and then leaving an empty space in the GTC focal surface. The dispersing suite holds three large pseudo-grisms, formed by the combination of high-efficiency FuSi ion-etched ruled transmission grating sandwiched between two identical ZnSe prisms, plus one standard replicated grism. These dispersing units offer the spectral recording of an atmospheric window $J,H,K$ in a single shot with resolving powers of 5000, 4250, 4000, respectively for a nominal slit width of 0.6\arcsec, plus the combined bands $YJ$ or $HK$, also in a single shot, with resolution of $\sim$ 1000. The original Hawaii2 FPA detector, which is prone to instabilities that add noise to the signal, is being replaced by a new Hawaii2RG detector array, and is currently being tested at the IAC. This paper presents the most salient features of the instrument, with emphasis on its observing capabilities and the functionality of the configurable slit unit. Sample early science data is also shown.

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