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The Fiber Multi-Object Spectrograph (FMOS) Project: the Anglo-Australian Observatory role

机译:光纤多目标光谱仪(FMOS)项目:英澳观察站的作用

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The Fiber Multi-Object Spectrograph (FMOS) project is an Australia-Japan-UK collaboration to design and build a novel 400 fiber positioner feeding two near infrared spectrographs from the prime focus of the Subaru telescope. The project comprises several parts. Those under design and construction at the Anglo-Australian Observatory (AAO) are the piezoelectric actuator driven fiber positioner (Echidna), a wide field (30 arcmin) corrector and a focal plane imager (FPI) used for controlling the positioner and for field acquisition. This paper presents an overview of the AAO share of the FMOS project. It describes the technical infrastructure required to extend the single Echidna "spine" design to a fully functioning multi-fiber instrument, capable of complete field reconfiguration in less than ten minutes. The modular Echidna system is introduced, wherein the field of view is populated by 12 identical rectangular modules, each positioning 40 science fibers and 2 guide fiber bundles. This arrangement allows maintenance by exchanging modules and minimizes the difficulties of construction. The associated electronics hardware, in itself a significant challenge, includes a 23 layer PCB board, able to supply current to each piezoelectric element in the module. The FPI is a dual purpose imaging system translating in two coordinates and is located beneath the assembled modules. The FPI measures the spine positions as well as acquiring sky images for instrument calibration and for field acquisition. An overview of the software is included.
机译:光纤多目标光谱仪(FMOS)项目是澳大利亚,日本和英国的合作项目,旨在设计和制造一种新颖的400光纤定位器,该定位器从斯巴鲁望远镜的主要焦点向两台近红外光谱仪馈电。该项目包括几个部分。英澳天文台(AAO)正在设计和建造的是压电致动器驱动的光纤定位器(Echidna),宽视场(30 arcmin)校正器和焦平面成像仪(FPI),用于控制定位器和现场采集。本文概述了FMOS项目中AAO的份额。它描述了将单一Echidna“脊柱”设计扩展到功能齐全的多光纤仪器所需的技术基础设施,该仪器能够在不到十分钟的时间内完成现场重新配置。介绍了模块化的针chi系统,其中视场由12个相同的矩形模块组成,每个矩形模块定位40根科学纤维和2根引导纤维束。这种布置允许通过交换模块进行维护,并最大程度地减少了施工难度。相关的电子硬件本身就是一个很大的挑战,它包括一个23层PCB板,能够为模块中的每个压电元件提供电流。 FPI是在两个坐标之间平移的双重用途成像系统,位于已组装的模块下方。 FPI测量脊柱位置以及获取天空图像以进行仪器校准和现场采集。包括软件概述。

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