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Planck 2015 results - V. LFI calibration

机译:普朗克2015年业绩-V.LFI校准

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摘要

We present a description of the pipeline used to calibrate the Planck Low Frequency Instrument (LFI) timelines into thermodynamic temperatures for the Planck 2015 data release, covering four years of uninterrupted operations. As in the 2013 data release, our calibrator is provided by the spin-synchronous modulation of the cosmic microwave background dipole, but we now use the orbital component, rather than adopting the Wilkinson Microwave Anisotropy Probe (WMAP) solar dipole. This allows our 2015 LFI analysis to provide an independent Solar dipole estimate, which is in excellent agreement with that of HFI and within 1 σ (0.3% in amplitude) of the WMAP value. This 0.3% shift in the peak-to-peak dipole temperature from WMAP and a general overhaul of the iterative calibration code increases the overall level of the LFI maps by 0.45% (30?GHz), 0.64% (44?GHz), and 0.82% (70?GHz) in temperature with respect to the 2013 Planck data release, thus reducing the discrepancy with the power spectrum measured by WMAP. We estimate that the LFI calibration uncertainty is now at the level of 0.20% for the 70?GHz map, 0.26% for the 44?GHz map, and 0.35% for the 30?GHz map. We provide a detailed description of the impact of all the changes implemented in the calibration since the previous data release.
机译:我们介绍了用于将Planck低频仪器(LFI)时间线校准为热力学温度的管道,以进行Planck 2015数据发布,涵盖了四年的不间断运行。与2013年的数据发布一样,我们的校准器由宇宙微波背景偶极子的自旋同步调制提供,但我们现在使用的是轨道分量,而不是采用威尔金森微波各向异性探测器(WMAP)太阳偶极子。这使我们的2015年LFI分析能够提供独立的太阳偶极子估计,这与HFI的估计非常吻合,并且在WMAP值的1σ(幅度为0.3%)以内。 WMAP峰峰值偶极子温度的这种0.3%的变化和迭代校准代码的全面检修使LFI映射的总体水平提高了0.45%(30?GHz),0.64%(44?GHz),并且相对于2013年普朗克数据发布,温度为0.82%(70?GHz),因此减少了与WMAP测量的功率谱之间的差异。我们估计,LFI校准不确定性现在在70?GHz映射的水平为0.20%,在44?GHz映射的水平为0.26%,在30?GHz映射的水平为0.35%。我们将详细介绍自上次发布数据以来在校准中实施的所有更改的影响。

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