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The NIKA2 large field-of-view millimeter continuum camera for the 30-m IRAM telescope

机译:用于30米IRAM望远镜的NIKA2大型视野毫米连续成像仪

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摘要

Context. Millimetre-wave continuum astronomy is today an indispensable tool for both general astrophysics studies (e.g. star formation, nearby galaxies) and cosmology (e.g. CMB - cosmic microwave background and high-redshift galaxies). General purpose, large-field-of-view instruments are needed to map the sky at intermediate angular scales not accessible by the high-resolution interferometers (e.g. ALMA in Chile, NOEMA in the French Alps) and by the coarse angular resolution space-borne or ground-based surveys (e.g. Planck, ACT, SPT). These instruments have to be installed at the focal plane of the largest single-dish telescopes, which are placed at high altitude on selected dry observing sites. In this context, we have constructed and deployed a three-thousand-pixeluddual-band (150 GHz and 260 GHz, respectively 2 mm and 1.15 mm wavelengths) camera to image an instantaneous circular field-ofview of 6.5 arcminutes in diameter, and configurable to map the linear polarisation at 260 GHz.udAims. First, we are providing a detailed description of this instrument, named NIKA2 (New IRAM KID Arrays 2), in particular focussing on the cryogenics, optics, focal plane arrays based on Kinetic Inductance Detectors (KID), and the readout electronics. The focal planes and part of the optics are cooled down to the nominal 150 mK operating temperature by means of an ad-hoc dilutionudrefrigerator. Secondly, we are presenting the performance measured on the sky during the commissioning runs that took place between October 2015 and April 2017 at the 30-meter IRAM (Institut of Millimetric Radio Astronomy) telescope at Pico Veleta, near Granadaud(Spain).udMethods. We have targeted a number of astronomical sources. Starting from beam-maps on primary and secondary calibrators we have then gone to extended sources and faint objects. Both internal (electronic) and on-the-sky calibrations are applied. The generaludmethods are described in the present paper.udResults. NIKA2 has been successfully deployed and commissioned, performing in-line with expectations. In particular, NIKA2 exhibits full width at half maximum (FWHM) angular resolutions of around 11 and 17.5 arc-seconds at respectively 260 and 150 GHz.udThe noise equivalent flux densities (NEFD) are, at these two respective frequencies, 33±2 and 8±1 mJy ·sud1/2. A first successful scienceudverification run was achieved in April 2017. The instrument is currently offered to the astronomy community and will remain available for at least the following ten years.
机译:上下文。如今,毫米波连续谱天文学是一般天体物理学研究(例如恒星形成,附近的星系)和宇宙学(例如CMB-宇宙微波背景和高红移星系)不可或缺的工具。需要通用的大视场仪器,以高分辨率干涉仪(例如智利的ALMA,法国阿尔卑斯山的NOEMA)和星载的粗角分辨率无法到达的中等角度标度绘制天空或地面调查(例如Planck,ACT,SPT)。这些仪器必须安装在最大的单碟望远镜的焦平面上,这些望远镜要在高空放置在选定的干观测点上。在这种情况下,我们构造并部署了一个3000像素双波段(150 GHz和260 GHz,分别为2 mm和1.15 mm波长)的摄像机,以成像直径为6.5弧分的瞬时圆形视场,并且可配置为将线性极化映射为260 GHz。 udAims。首先,我们将详细介绍名为NIKA2(新IRAM KID阵列2)的仪器,特别着重于低温技术,光学器件,基于动感检测器(KID)的焦平面阵列和读出电子设备。焦平面和部分光学器件通过临时稀释/除湿器冷却至标称的150 mK工作温度。其次,我们将展示在2015年10月至2017年4月之间的调试运行期间在天空上测得的性能,该运行是在西班牙格拉纳达 ud附近的皮科·维莱塔(Pico Veleta)的30米IRAM(毫米波射电天文学研究所)望远镜上进行的。 udMethods。我们已经瞄准了许多天文资源。从主要和次要校准器上的波束图开始,然后到扩展源和微弱对象。内部(电子)和空中校准均适用。常规 udmethod在本白皮书中进行了描述。 udResults。 NIKA2已成功部署和调试,性能符合预期。尤其是,NIKA2在260和150 GHz处的半峰全宽(FWHM)角分辨率分别约为11和17.5弧秒。 ud在这两个频率下,噪声等效通量密度(NEFD)为33±2和8±1 mJy·s ud1 / 2。 2017年4月,首次科学验证成功完成。该仪器目前已提供给天文学界,并将至少在接下来的十年内使用。

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