论文标题

关于时域和光谱窗口中Alma通量校准的准确性

On the accuracy of the ALMA flux calibration in the time domain and across spectral windows

论文作者

Francis, Logan, Johnstone, Doug, Herczeg, Gregory, Hunter, Todd R., Harsono, Daniel

论文摘要

各种各样的科学目标需要使用Atacama大毫米/亚毫米阵列(ALMA)对观测值进行准确的通量校准,但是,由于“网格” Quasars Quasars Alma使用的随机时间变化,该目标仍然具有挑战性。在这项工作中,我们使用343.5 GHz(带7)Alma Atacama紧凑型阵列观测值,这些阵列观测在7个时代超过7个时代的四个明亮,稳定的年轻恒星物体,以独立评估Alma通量校准的准确性并完善跨时期的相对校准。使用这四个额外的校准器使我们能够实现$ \ sim 3 \%$的前所未有的相对ALMA校准精度。另一方面,当天文台校准器目录不是最新的时,由ALMA管道校准的频段7数据可能比标称10 \%的通量校准较差,而当天气相关相关的相位去校正时,可能无法或不尝试使用与天气相关的相位去核能加剧。我们还发现了0.8 \%的光谱窗口之间的相对通量校准不确定性,这意味着测量单个ALMA带中的光谱指数可能高度不确定。因此,我们为需要高通量准确性和鲁棒校准的科学目标推荐了各种方法,特别是观察附加校准器与相对校准策略相结合,并观察太阳系对象以高度准确。

A diverse array of science goals require accurate flux calibration of observations with the Atacama Large Millimeter/Submillimeter array (ALMA), however, this goal remains challenging due to the stochastic time-variability of the ``grid'' quasars ALMA uses for calibration. In this work, we use 343.5 GHz (Band 7) ALMA Atacama Compact Array observations of four bright and stable young stellar objects over 7 epochs to independently assess the accuracy of the ALMA flux calibration and to refine the relative calibration across epochs. The use of these four extra calibrators allow us to achieve an unprecedented relative ALMA calibration accuracy of $\sim 3\%$. On the other hand, when the observatory calibrator catalog is not up-to-date, the Band 7 data calibrated by the ALMA pipeline may have a flux calibration poorer than the nominal 10\%, which can be exacerbated by weather-related phase decorrelation when self-calibration of the science target is either not possible or not attempted. We also uncover a relative flux calibration uncertainty between spectral windows of 0.8\%, implying that measuring spectral indices within a single ALMA band is likely highly uncertain. We thus recommend various methods for science goals requiring high flux accuracy and robust calibration, in particular, the observation of additional calibrators combined with a relative calibration strategy, and observation of solar system objects for high absolute accuracy.

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