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MEGARA, the new intermediate-resolution optical IFU and MOS for GTC: getting ready for the telescope

机译:MEGARA,用于GTC的新型中分辨率光学IFU和MOS:为望远镜做好准备

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摘要

MEGARA (Multi-Espectrografo en GTC de Alta Resolucion para Astronomia) is an optical Integral-Field Unit (IFU) and Multi-Object Spectrograph (MOS) designed for the GTC 10.4m telescope in La Palma that is being built by a Consortium led by UCM (Spain) that also includes INAOE (Mexico), IAA-CSIC (Spain), and UPM (Spain). The instrument is currently finishing AIV and will be sent to GTC on November 2016 for its on-sky commissioning on April 2017. The MEGARA IFU fiber bundle (LCB) covers 12.5x11.3 arcsec(2) with a spaxel size of 0.62 arcsec while the MEGARA MOS mode allows observing up to 92 objects in a region of 3.5x3.5 arcmin(2) around the IFU. The IFU and MOS modes of MEGARA will provide identical intermediate-to-high spectral resolutions (R-FWHM similar to 6,000, 12,000 and 18,700, respectively for the low-, mid-and high-resolution Volume Phase Holographic gratings) in the range 3700-9800 angstrom angstrom. An x-y mechanism placed at the pseudo-slit position allows (1) exchanging between the two observing modes and (2) focusing the spectrograph for each VPH setup. The spectrograph is a collimator-camera system that has a total of 11 VPHs simultaneously available (out of the 18 VPHs designed and being built) that are placed in the pupil by means of a wheel and an insertion mechanism. The custom-made cryostat hosts a 4kx4k 15-mu m CCD. The unique characteristics of MEGARA in terms of throughput and versatility and the unsurpassed collecting are of GTC make of this instrument the most efficient tool to date to analyze astrophysical objects at intermediate spectral resolutions. In these proceedings we present a summary of the instrument characteristics and the results from the AIV phase. All subsystems have been successfully integrated and the system-level AIV phase is progressing as expected.
机译:MEGARA(多光谱GTC de Alta Resolucion para Astronomia)是为拉帕尔玛岛GTC 10.4m望远镜设计的光学整体场单元(IFU)和多物光谱仪(MOS),由一个财团牵头建造。 UCM(西班牙),还包括INAOE(墨西哥),IAA-CSIC(西班牙)和UPM(西班牙)。该仪器目前正在完成AIV,并将于2016年11月发送至GTC,以便于2017年4月进行空中调试。MEGARA IFU光纤束(LCB)覆盖12.5x11.3 arcsec(2),其spaxel大小为0.62 arcsec。 MEGARA MOS模式允许在IFU周围的3.5x3.5 arcmin(2)区域中观察多达92个对象。 MEGARA的IFU和MOS模式将提供3700范围内的相同的中高光谱分辨率(R-FWHM分别类似于低,中和高分辨率体相全息光栅的6,000、12,000和18,700,分别相似) -9800埃。放置在伪缝位置的x-y机制允许(1)在两种观察模式之间进行交换,以及(2)为每个VPH设置聚焦光谱仪。光谱仪是准直仪-相机系统,总共有11个VPH同时可用(在设计和制造的18个VPH中),这些VPH通过轮子和插入机构放置在瞳孔中。定制的低温恒温器可容纳4kx4k的15微米CCD。 MEGARA在通量,多功能性和无与伦比的收集方面的独特特征使GTC成为该仪器迄今为止最有效的工具,可在中等光谱分辨率下分析天体。在这些程序中,我们概述了仪器特性和AIV阶段的结果。所有子系统均已成功集成,并且系统级AIV阶段正在按预期进行。

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