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首页> 外文期刊>Astronomy and astrophysics >3C?286: a bright, compact, stable, and highly polarized calibrator for millimeter-wavelength observations
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3C?286: a bright, compact, stable, and highly polarized calibrator for millimeter-wavelength observations

机译:3C?286:一种用于毫米波观测的明亮,紧凑,稳定且高度偏振的校准器

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Context. Several millimeter and submillimeter facilities with linear polarization observing capabilities have started operating during the last years. These facilities, as well as other previous millimeter telescopes and interferometers, require bright and stable linear polarization calibrators to calibrate new instruments and to monitor their instrumental polarization. The current limited number of adequate calibrators implies difficulties in the acquisition of these calibration observations. Aims. Looking for additional linear polarization calibrators in the millimeter spectral range, we started monitoring 3C?286 in mid-2006. This source is a standard and highly stable polarization calibrator for radio observations. Methods. Here we present the 3?mm and 1?mm monitoring observations obtained between September 2006 and January 2012 with the XPOL polarimeter on the IRAM 30?m Millimeter Telescope. Results. Our observations show that 3C?286 is a bright source of constant total flux with 3?mm flux density S3???mm?=?(0.91?±?0.02)?Jy. The 3?mm linear polarization degree (p3???mm?=?[13.5?±?0.3]?%) and polarization angle (χ3???mm?=?[37.3?±?0.8]?°, expressed in the equatorial coordinate system) were also constant during the time span of our observations. Although with poorer time sampling and signal-to-noise ratio, our 1?mm observations of 3C?286 are also reproduced by a constant source of 1?mm flux density (S1???mm?=?[0.30?±?0.03]??Jy), polarization fraction (p1???mm?=?[14.4?±?1.8]?%), and polarization angle (χ1???mm?=?[33.1?±?5.7]?°). Conclusions. This, together with the previously known compact structure of 3C?286 – extended by ?~3.5′′ in the sky – allow us to propose 3C?286 as a new calibrator for both single-dish and interferometric polarization observations at 3?mm, and possibly at shorter wavelengths.
机译:上下文。在过去的几年中,一些具有线性偏振观测功能的毫米和亚毫米级设施已经开始运行。这些设施以及以前的其他毫米望远镜和干涉仪需要明亮且稳定的线性偏振校准器,以校准新仪器并监视其仪器偏振。当前有限数量的适当校准器暗示了在获取这些校准观测值方面的困难。目的为了在毫米光谱范围内寻找其他线性偏振校准器,我们于2006年中开始监视3C?286。该源是用于无线电观测的标准且高度稳定的偏振校准器。方法。在这里,我们介绍了在2006年9月至2012年1月之间使用IRAM 30毫米毫米望远镜上的XPOL偏振计获得的3毫米和1毫米监视观测结果。结果。我们的观察表明,3C 286是恒定总通量的亮源,其通量密度为3?mm S3?mm?=?(0.91?±?0.02)?Jy。 3mm的线性极化度(p3·mm·mm =π[13.5α±π0.3]%)和极化角(χ3·mm·mm =α[37.3°±π0.8]°)表示为在我们观测的时间范围内,赤道坐标系也保持不变。尽管时间采样和信噪比较差,但我们对3C?286的1?mm观测值也可以通过1?mm通量密度的恒定源来再现(S1 ??? mm?=?[0.30?±?0.03 ]·Jy),极化率(p1··········································································[(((((((((((((((((((1))))(3)((1)))(((1)))((1)) 。结论。加上先前已知的3C?286紧凑结构(在天空中扩展了?〜3.5''),我们可以提出3C?286作为一种新校准器,用于在3?mm处进行单皿和干涉偏振观察,并可能在较短的波长下。

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