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GISMO: A 2-Millimeter Bolometer Camera for the IRAM 30 m Telescope

机译:GISMO:适用于IRAM 30 M望远镜的2毫米钻头计相机

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We are building a bolometer camera (the Goddard-Iram Superconducting 2-Millimeter Observer, GISMO) for operation in the 2 mm atmospheric window to be used at the IRAM 30 m telescope. The instrument uses a 8x16 planar array of multiplexed TES bolometers which incorporates our newly designed Backshort Under Grid (BUG) architecture. Due to the size and sensitivity of the detector array (the NEP of the detectors is 4 x 10~(-17) W/Hz~(1/2)), this instrument will be unique in that it will be capable of providing significantly greater imaging sensitivity and mapping speed at this wavelength than has previously been possible. The major scientific driver for this instrument is to provide the IRAM 30 m telescope with the capability to rapidly observe galactic and extragalactic dust emission, in particular from high-z ULIRGs and quasars, even in the summer season. The 2 mm spectral range provides a unique window to observe the earliest active dusty galaxies in the universe and is well suited to better confine the star formation rate in these objects. The instrument will fill in the SEDs of high redshift galaxies at the Rayleigh-Jeans part of the dust emission spectrum, even at the highest redshifts. The observational efficiency of a 2 mm camera with respect to bolometer cameras operating at shorter wavelengths increases for objects at redshifts beyond z ~ 1 and is most efficient at the highest redshifts, at the time when the first stars were re-ionizing the universe. Our models predict that at this wavelength one out of four serendipitously detected galaxies will be at a redshift of z > 6.5.
机译:我们正在建造一台钻孔计摄像头(Goddard-Iram超导2毫米观察者,GISMO),用于在2mm大气窗口中运行,以便在IRAM 30 M望远镜上使用。该仪器使用8x16平面阵列多路复用TES钻孔仪,该钻头在网格(BUG)架构下包含新设计的后海。由于探测器阵列的尺寸和灵敏度(检测器的NEP为4×10〜(-17)W / Hz〜(1/2)),该仪器将是独一无二的,因为它将能够显着提供在该波长的更大的成像灵敏度和映射速度比以前可以实现。这种仪器的主要科学司机是提供伊拉现马30米望远镜,能够快速观察银河系和丙灭尘,特别是在夏季。 2 mm光谱范围提供独特的窗口,以观察宇宙中最早的活性尘土飞扬的星系,并且非常适合于更好地限制这些物体中的星形成速率。仪器将填写在雷尔利牛仔裤部分的粉尘发射光谱的一部分,即使在最高的红移上也会填补了雷利牛仔裤的Seds。 2 mm相机相对于在较短波长下操作的钻头摄像机的观察效率随着Z〜1之外的红移的对象而增加,并且在第一颗星重新电离宇宙时,最高的红移最高效率。我们的模型预测,在这个波长中,四个星系中的一个星系中的一个是Z> 6.5的红移。

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