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Development of an integral field unit for a near-infrared multi-object imaging spectrograph SWIMS

机译:近红外多目标成像光谱仪SWIMS积分场单元的开发

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We are developing an integral field unit (IFU) for a near-infrared multi-object imaging spectrograph SWIMS(Simultaneous-color Wide-field Infrared Multi-object Spectrograph). SWIMS is an instrument for the 6.5mtelescope of the University of Tokyo Atacama Observatory (TAO) project on the summit of Co. Chajnantor(altitude of 5,640m) in northern Chile. Most of near infrared integral field spectrographs (IFSs) on 8–10m classtelescopes are used with adaptive optics and have fine spatial sampling. Compared with them, SWIMS IFUhas higher sensitivity for extended objects because it has coarser spatial sampling optimized for seeing-limitobservations. We have investigated the feasible optical design, and found a possible layout whose field of viewis about 14 x 10 arcsecsup2/sup with 0.4 arcsec slice width. All IFU mirror arrays will be made of aluminum alloy tomatch the thermal expansion with support structures, as they are placed in a cryogenic environment. They willbe fabricated monolithically with high precision machining to reduce alignment process. We have carried out afabrication test of a spherical surface and confirmed that surface roughness and surface figure error are enoughlow for near-infrared light. As a next step, fabrication of a prototype mirror array with 3 reflective surfaces isplanned. In this paper, we will show our project outline, the IFU optical design and the results of prototypingworks.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:我们正在开发用于近红外多目标成像光谱仪SWIMS(同色宽视场红外多目标光谱仪)的积分场单元(IFU)。 SWIMS是位于智利北部Co.Chajnantor公司(海拔5640m)山顶的东京大学阿塔卡马天文台(TAO)项目6.5吨望远镜的仪器。在8–10m类望远镜上的大多数近红外积分场光谱仪(IFS)均与自适应光学系统配合使用,并具有良好的空间采样。与之相比,SWIMS IFU对扩展对象具有更高的灵敏度,因为它具有针对观看限制观测而优化的较粗糙的空间采样。我们研究了可行的光学设计,并找到了一种可能的布局,其视场约为14 x 10 arcsec 2 ,切片宽度为0.4 arcsec。所有的IFU反射镜阵列都将由铝合金制成,以使其热膨胀与支撑结构相匹配,因为它们被放置在低温环境中。它们将采用高精度机加工整体制造,以减少对准过程。我们已经对球形表面进行了加工测试,并确认表面粗糙度和表面图形误差对于近红外光足够低。下一步,计划制造具有3个反射面的原型反射镜阵列。在本文中,我们将展示我们的项目大纲,IFU光学设计和原型制作的结果。©(2012)COPYRIGHT光电仪器工程师协会(SPIE)。摘要的下载仅允许个人使用。

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