论文标题

GAIA数据版本3:Gaia扫描角度依赖信号和虚假时期

Gaia Data Release 3: Gaia scan-angle dependent signals and spurious periods

论文作者

Holl, B., Fabricius, C., Portell, J., Lindegren, L., Panuzzo, P., Bernet, M., Castañeda, J., de Fombelle, G. Jevardat, Audard, M., Ducourant, C., Harrison, D. L., Evans, D. W., Busso, G., Sozzetti, A., Gosset, E., Arenou, F., De Angeli, F., Riello, M., Eyer, L., Rimoldini, L., Gavras, P., Mowlavi, N., Nienartowicz, K., Lecoeur-Taïbi, I., García-Lario, P., Pourbaix, D.

论文摘要

上下文:Gaia DR3时间序列数据可能包含与时间相关扫描角有关的虚假信号。目的:我们的目的是解释扫描角度依赖信号的起源以及它们如何导致虚假时期,提供统计数据以在数据中识别它们,并建议如何在GAIA DR3数据和将来的版本中与它们进行处理。方法:使用真实的GAIA数据,以及数值和分析模型,我们可视化并解释数据中观察到的功能。结果:我们使用GAIA数据证明了源结构(多样性或扩展性)或来自近距离明亮对象的污染可能会导致图像参数确定的偏见,从而得出光度,天体和(间接)径向速度时间序列。这些偏见是仪器的时间依赖性扫描方向的函数,因此可以引入依赖性信号,这又可能导致特定的虚假周期性信号。数值模拟定性地重现了在伪时期观察到的一般结构,并且光度法和天体的空间分布。各种统计数据允许识别受影响的来源。结论:扫描角依赖信号和随后的伪造时期的起源是充分理解的,是由固定取向的光学对<0.5英寸(在具有P >> 5y的二进制文件中)和(核心(岩心)和(距离的核心)以及远距离的档案中的大部分驱动器的范围。用谨慎处理(例如,Gaia_source没有触及)。

Context: Gaia DR3 time series data may contain spurious signals related to the time-dependent scan angle. Aims: We aim to explain the origin of scan-angle dependent signals and how they can lead to spurious periods, provide statistics to identify them in the data, and suggest how to deal with them in Gaia DR3 data and in future releases. Methods: Using real Gaia data, alongside numerical and analytical models, we visualise and explain the features observed in the data. Results: We demonstrated with Gaia data that source structure (multiplicity or extendedness) or pollution from close-by bright objects can cause biases in the image parameter determination from which photometric, astrometric and (indirectly) radial velocity time series are derived. These biases are a function of the time-dependent scan direction of the instrument and thus can introduce scan-angle dependent signals, which in turn can result in specific spurious periodic signals. Numerical simulations qualitatively reproduce the general structure observed in the spurious period and spatial distribution of photometry and astrometry. A variety of statistics allows for identification of affected sources. Conclusions: The origin of the scan-angle dependent signals and subsequent spurious periods is well-understood and is in majority caused by fixed-orientation optical pairs with separation <0.5" (amongst which binaries with P>>5y) and (cores of) distant galaxies. Though the majority of sources with affected derived parameters have been filtered out from the Gaia archive, there remain Gaia DR3 data that should be treated with care (e.g. gaia_source was untouched). Finally, the various statistics discussed in the paper can not only be used to identify and filter affected sources, but alternatively reveal new information about them not available through other means, especially in terms of binarity on sub-arcsecond scale.

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