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Z-Spec: a broadband, direct-detection, millimeter-wave spectrometer — instrument status and first results

机译:Z-SPEC:宽带,直接检测,毫米波光谱仪 - 仪器状态和第一个结果

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We report on the status of Z-Spec, including preliminary results of our first astronomical measurements. Z-Spec is a cryogenic, broadband, millimeter-wave grating spectrometer designed for molecular line surveys of galaxies, including carbon monoxide redshift measurements of high-redshift submillimeter sources. With an instantaneous bandwidth of 185-305 GHz, Z-Spec covers the entire 1 mm atmospheric transmission window with a resolving power of 200-400. The spectrometer employs the Waveguide Far-Infrared Spectrometer (WaFIRS) architecture, in which the light propagation is confined within a parallel-plate waveguide, resulting in a minimum mechanical envelope. Its array of 160 silicon-nitride micromesh bolometers is cooled to below 100 mK for background-limited performance. With its sensitivity, broad bandwidth, and compactness, Z-Spec serves as a prototype for a future far-IR spectrometer aboard a cold telescope in space. Z-Spec successfully demonstrated functionality with a partial array of detectors and warm electronics during a week-long engineering run at the Caltech Submillimeter Observatory in June, 2005. We describe the instrument performance evaluated at the telescope and in subsequent laboratory tests and compare these results with design specifications. Following several modifications we returned to the telescope in April, 2006. We present a preliminary astronomical spectrum and discuss our plans to improve sensitivity and throughput to achieve our ultimate science goals.
机译:我们对Z-规格的状态报告,包括我们的第一个天文测量的初步结果。 Z-规格是低温,宽带,毫米波光栅光谱仪设计用于星系的分子线调查,包括的高红移亚毫米源一氧化碳红移测量。用185-305千兆赫的瞬时带宽,Z-规格覆盖用的200-400分辨力整个1毫米大气传输窗口。该光谱仪采用波导远红外光谱仪(WaFIRS)架构,其中,所述光传播被限制一个平行板波导内,从而产生最小机械信封。其的160氮化硅微筛孔测辐射热计阵列被冷却到低于100 mK的背景极限性能。凭借其灵敏度,高带宽和紧凑,Z-规格作为原型为未来的远红外光谱仪乘坐空间中的一个寒冷的望远镜。 Z-规格在加州理工学院亚毫米波天文台在六月进行为期一周的工程运行期间成功地展示了与探测器和温暖电子的部分阵列功能,2005年我们描述的望远镜,并在随后的实验室测试评估仪器的性能和比较这些结果设计规范。继我们在四月回到了望远镜若干修改,2006年我们提出了一个初步的天文光谱,并讨论我们的计划,以提高灵敏度和吞吐量,以实现我们的最终目标的科学。

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