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首页> 外文期刊>Journal of Low Temperature Physics >WSPEC: A Waveguide Filter-Bank Focal Plane Array Spectrometer for Millimeter Wave Astronomy and Cosmology
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WSPEC: A Waveguide Filter-Bank Focal Plane Array Spectrometer for Millimeter Wave Astronomy and Cosmology

机译:WSPEC:适用于毫米波天文学和宇宙学的波导滤光片焦平面阵列光谱仪

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Imaging and spectroscopy at (sub-)millimeter wavelengths are key frontiers in astronomy and cosmology. Large area spectral surveys with moderate spectral resolution (-200) will be used to characterize large-scale structure and star formation through intensity mapping surveys in emission lines such as the CO rotational transitions. Such surveys will also be used to study the the Sunyaev Zeldovich (SZ) effect, and will detect the emission lines and continuum spectrum of individual objects. WSPEC is an instrument proposed to target these science goals. It is a channelizing spectrometer realized in rectangular waveguide, fabricated using conventional high-precision metal machining. Each spectrometer is coupled to free space with a machined feed horn, and the devices are tiled into a 2D array to fill the focal plane of the telescope. The detectors will be aluminum lumped-element kinetic inductance detectors (LEKIDs). To target the CO lines and SZ effect, we will have bands at 135-175 and 190-250 GHz, each Nyquist-sampled at resolution. Here, we discuss the instrument concept and design, and successful initial testing of a WR10 (i.e., 90 GHz) prototype spectrometer. We recently tested a WR5 (180 GHz) prototype to verify that the concept works at higher frequencies, and also designed a resonant backshort structure that may further increase the optical efficiency. We are making progress towards integrating a spectrometer with a LEKID array and deploying a prototype device to a telescope for first light.
机译:(亚)毫米波长的成像和光谱学是天文学和宇宙学的关键领域。具有中等光谱分辨率(-200)的大面积光谱调查将用于通过排放线(例如CO旋转跃迁)中的强度映射调查来表征大规模结构和恒星形成。此类调查还将用于研究Sunyaev Zeldovich(SZ)效应,并将检测单个物体的发射线和连续谱。 WSPEC是针对这些科学目标而提出的一种工具。它是在矩形波导中实现的通道化光谱仪,它是使用常规的高精度金属加工制造的。每个光谱仪都通过机械加工的馈电喇叭耦合到自由空间,并且将设备平铺为2D阵列以填充望远镜的焦平面。探测器将是铝集总动电感探测器(LEKID)。为了针对CO线和SZ效果,我们将在135-175 GHz和190-250 GHz频段设置频段,每个频段均以分辨率进行奈奎斯特采样。在这里,我们讨论了仪器的概念和设计以及WR10(即90 GHz)原型光谱仪的成功初始测试。我们最近测试了WR5(180 GHz)原型,以验证该概念可在更高的频率下工作,并且还设计了谐振反向短路结构,可进一步提高光学效率。我们正在朝着将光谱仪与LEKID阵列集成以及将原型设备部署到望远镜中以获得第一束光的方向取得进展。

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