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New technological developments in Integral Field Spectroscopy

机译:积分场光谱学的新技术发展

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Integral Field Spectroscopy (IFS) provides a spectrum simultaneously for each spatial sample of an extended two-dimensional field. Basically, the IFS is located in a telescope focal plane and is composed by an Integral Field Unit (IFU or image slicer) and a spectrograph. The IFU acts as a coupler between the telescope and the spectrograph by reformatting optically a rectangular field into a quasi-continuous pseudo-slit located at the entrance focal plane of the spectrograph. The Integral Field Units (IFUs) are presently limited either by their cost/risk (when manufactured with classical glass polishing techniques) or by their performances (when constituted by metallic components).Recent innovative methods, developed conjointly by LAM (Laboratoire d'Astrophysique de Marseille, France) and WinLight Optics (Marseille, France), allow reaching high performances (accurate roughness, sharp edges, surface form, etc.) with standard glass manufactured components while saving costs and time by an order of magnitude compared with classical techniques. Last developments (in term of design and manufacturing) and applications are presented in details in this article.
机译:积分场光谱(IFS)同时为扩展的二维场的每个空间样本提供一个光谱。基本上,IFS位于望远镜焦平面上,由一个积分场单元(IFU或图像切片器)和一个光谱仪组成。 IFU通过将矩形视场重新格式化为位于光谱仪入口焦平面上的准连续伪缝,从而充当望远镜和光谱仪之间的耦合器。当前,整体场单元(IFU)受到成本/风险(使用经典玻璃抛光技术制造时)或性能(由金属部件构成时)的限制。 由LAM(法国马赛劳动实验室)和WinLight Optics(法国马赛)联合开发的最新创新方法,可以用标准玻璃制造的部件达到高性能(准确的粗糙度,锋利的边缘,表面形状等)。与传统技术相比,可节省大量成本和时间。本文详细介绍了最近的发展(在设计和制造方面)和应用。

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