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Near-infrared Integral-Field Spectrograph (NIFS): An Instrument Proposed for Gemini

机译:近红外积分场光谱仪(NIFS):为双子座提议的仪器

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In late 1998 the International Gemini Project Office identified a need for a low cost, near-infrared spectrograph to be commissioned on the Gemini South telescope on the shortest possible timescale. In response, the Research School of Astronomy and Astrophysics of the Australian National University proposed to design, construct, and commission a near-infrared, integral-field spectrograph on Gemini. The science drivers and novel design of the Near-infrared Integral-Field Spectrograph (NIFS) are described in this paper. NIFS will achieve significant economies in cost and schedule in several ways: a€¢ By addressing targeted science with high efficiency. NIFS will primarily target velocity measurements in galaxies to study the demographics of black holes in galactic nuclei and the evolution of structural properties in high redshift galaxies. However, NIFS will also be applied to a wide range of general astronomical topics, but these will not dictate the instrument design. a€¢ By adopting a largely fixed-format design. A 3?·2a€3 ?— 3?·2a€3 a€?stair-casea€? integral field unit (IFU) will feed a near-infrared spectrograph with four fixed-angle gratings mounted on a single grating wheel. A single, fixed-format camera will form the spectral image on a 2048 ?— 2048 Rockwell HgCdTe HAWAII-2 array. Two-pixel spectral resolving powers of a??5400 will be achieved with complete wavelength coverage in each of the J, H, and K photometric bands through 32 optimally sampled 0?·1a€3 wide slitlets. The velocity resolution of a??55 km sa?’1 will be sufficient to achieve the targeted science objectives, and will allow software rejection of OH airglow lines. a€¢ By packaging the NIFS instrument within a duplicate of the Near-Infrared Imager (NIRI) cryostat. The NIRI cryostat, On-Instrument Wavefront Sensor (OIWFS), detector focusing mechanism, control system, and EPICS software will all be duplicated with only minimal change. Construction of the duplicate NIRI cryostat, OIWFS, and control system will be done by the University of Hawaii.
机译:1998年下半年,国际双子座项目办公室确定了需要在尽可能短的时间内在双子座南望远镜上调试低成本近红外光谱仪的条件。作为回应,澳大利亚国立大学天文学与天体物理研究学院提议在双子座上设计,建造并委托近红外积分场光谱仪。本文介绍了近红外积分场光谱仪(NIFS)的科学驱动力和新颖设计。 NIFS将通过以下几种方式在成本和进度上实现显着的经济效益:a)通过高效解决目标科学问题。 NIFS将主要针对银河系中的速度测量,以研究银河系核中黑洞的人口统计资料以及高红移星系中结构特性的演变。但是,NIFS也将适用于广泛的一般天文学主题,但这不会决定仪器的设计。通过采用很大程度上固定格式的设计。 A 3?·2a€3?— 3?·2a€3 a?一体式场单元(IFU)将为近红外光谱仪提供一个安装在单个光栅轮上的四个固定角度光栅。一台固定格式的摄像机将在2048?-2048罗克韦尔HgCdTe HAWAII-2阵列上形成光谱图像。通过32个最佳采样的0?·1a?3宽狭缝,在J,H和K光度学带中的每个波长范围内,都可以实现a ?? 5400的两像素光谱分辨能力。 55 km sa?’1的速度分辨率将足以实现目标科学目标,并允许软件拒绝OH气辉线。通过将NIFS仪器包装在近红外成像仪(NIRI)低温恒温器的副本中。 NIRI低温恒温器,仪器上的波前传感器(OIWFS),检测器聚焦机构,控制系统和EPICS软件都将被复制,而只需很小的改动。重复的NIRI低温恒温器,OIWFS和控制系统的建设将由夏威夷大学完成。

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