首页> 外文会议>Terahertz Physics, Devices, and Systems; Proceedings of SPIE-The International Society for Optical Engineering; vol.6373 >A 1.5 THz hot electron bolometer receiver for ground-based Terahertz astronomy in Northern Chile
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A 1.5 THz hot electron bolometer receiver for ground-based Terahertz astronomy in Northern Chile

机译:用于智利北部地面太赫兹天文学的1.5 THz热电子辐射计接收器

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A 1.5 THz superconducting receiver has been in operation at the Receiver Lab Telescope of the Smithsonian Astrophysical Observatory in Northern Chile since December 2004. This receiver incorporates a Hot Electron Bolometer (HEB) mixer chip made from a thin film of Niobium Titanium Nitride (NbTiN), which is mounted in a precision-machined waveguide mixer block attached to a corrugated waveguide horn assembly. With a noise temperature of around 1500 K, this receiver is sensitive enough for use in the pioneering field of ground-based terahertz spectral-line astronomy. A number of innovative techniques have been employed in the construction and deployment of this receiver. These include near-field vector beam mapping to enable accurate coupling to the telescope optics, the use of tunerless planar-diode based local oscillator unit capable of generating a few μW at 1.5 THz, and special calibration techniques required for terahertz astronomy. In this paper, we will report on the design, set-up and operation of this state-of-the-art instrument.
机译:自2004年12月以来,智利北部史密森天文台的接收器实验室望远镜一直在使用1.5 THz的超导接收器。该接收器集成了由氮化铌钛(NbTiN)薄膜制成的热电子鼓泡(HEB)混合器芯片。 ,安装在精密加工的波导混频器模块中,该模块与波纹波导喇叭组件相连。噪声温度约为1500 K,该接收器足够灵敏,可用于地面太赫兹光谱线天文学的开创性领域。在此接收器的构造和部署中采用了许多创新技术。这些措施包括近场矢量束映射,以实现与望远镜光学器件的精确耦合;基于无调谐器的平面二极管的本地振荡器单元的使用,能够在1.5 THz处产生几μW的功率;以及太赫兹天文学所需的特殊校准技术。在本文中,我们将报告这种先进仪器的设计,设置和操作。

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