论文标题

Planck LFI的Planck V. V.最小ADC更正

BeyondPlanck V. Minimal ADC Corrections for Planck LFI

论文作者

Herman, D., Watson, R. A., Andersen, K. J., Aurlien, R., Banjeri, R., Bersanelli, M., Bertocco, S., Brilenkov, M., Carbone, M., Colombo, L. P. L., Eriksen, H. K., Foss, M. K., Franceschet, C., Fuskeland, U., Galeotta, S., Galloway, M., Gerakakis, S., Gjerløw, E., Hensley, B., Iacobellis, M., Ieronymaki, M., Ihle, H. T., Jewell, J. B., Karakci, A., Keihänen, E., Maggio, G., Maino, D., Maris, M., Mennella, A., Paradiso, S., Partridge, B., Reinecke, M., Suur-Uski, A. -S., Svalheim, T. L., Tavagnacco, D., Thommesen, H., Watts, D. J., Wehus, I. K., Zacchei, A.

论文摘要

我们描述了贝叶斯端到端超越pllanck分析框架中采用的类似物到数字转换器(ADC)差异性非线性(DNL)的校正程序。该方法几乎与用于官方LFI数据处理中心(DPC)分析开发的方法相同,并且依赖于每个检测器数据流的BINNED RMS噪声概况。但是,我们首先将高斯拟合到每个显着的ADC诱导的RMS降低,然后从该平滑模型中得出相应的校正模型,而不是直接从RAW RMS轮廓构建校正配置文件。这种方法的主要优势是仅校正了受ADC DNL的显着影响的样品。新校正仅适用于对非线性检测到的数据,并且它们至少与DPC校正相当地执行。在总共88个LFI数据流(44个检测器中的每个检测器中的每个)中,我们在25个情况下应用了新的最小ADC校正,并在8例中维护DPC校正。所有这些纠正措施均适用于44或70 GHz通道,而如先前的分析中,30 GHz ADC没有显示出非线性的重要证据。通过比较BeyondPlanck和DPC ADC校正方法,我们估计残留ADC不确定性比44和70 GHz通道的总噪声低两个数量级,并且它们对当前宇宙参数估计的影响很小。但是,我们还表明,ADC校正中的非理想性可以在最终的频率图中产生尖锐的条纹,对于使用HFI,WMAP或其他数据集进行的将来的联合分析可能很重要。因此,我们得出的结论是,尽管现有的校正足以进行基于LFI的宇宙学参数分析,但仍需要对LFI ADC校正进行进一步的工作。

We describe the correction procedure for Analog-to-Digital Converter (ADC) differential non-linearities (DNL) adopted in the Bayesian end-to-end BeyondPlanck analysis framework. This method is nearly identical to that developed for the official LFI Data Processing Center (DPC) analysis, and relies on the binned rms noise profile of each detector data stream. However, rather than building the correction profile directly from the raw rms profile, we first fit a Gaussian to each significant ADC-induced rms decrement, and then derive the corresponding correction model from this smooth model. The main advange of this approach is that only samples which are significantly affected by ADC DNLs are corrected. The new corrections are only applied to data for which there is a clear detection of the non-linearities, and for which they perform at least comparably with the DPC corrections. Out of a total of 88 LFI data streams (sky and reference load for each of the 44 detectors) we apply the new minimal ADC corrections in 25 cases, and maintain the DPC corrections in 8 cases. All these correctsion are applited to 44 or 70 GHz channels, while, as in previous analyses, none of the 30 GHz ADCs show significant evidence of non-linearity. By comparing the BeyondPlanck and DPC ADC correction methods, we estimate that the residual ADC uncertainty is about two orders of magnitude below the total noise of both the 44 and 70 GHz channels, and their impact on current cosmological parameter estimation is small. However, we also show that non-idealities in the ADC corrections can generate sharp stripes in the final frequency maps, and these could be important for future joint analyses with HFI, WMAP, or other datasets. We therefore conclude that, although the existing corrections are adequate for LFI-based cosmological parameter analysis, further work on LFI ADC corrections is still warranted.

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