论文标题

数据发布3:太阳系调查

Data Release 3: the Solar System survey

论文作者

Tanga, P., Pauwels, T., Mignard, F., Muinonen, K., Cellino, A., David, P., Hestroffer, D., Spoto, F., Berthier, J., Guiraud, J., Roux, W., Carry, B., Delbo, M., Oro, A. Dell, Fouron, C., Galluccio, L., Jonckheere, A., Klioner, S. A., Lefustec, Y., Liberato, L., Ordénovic, C., Oreshina-Slezak, I., Penttilä, A., Pailler, F., Panem, Ch., Petit, J. -M., Portell, J., Poujoulet, E., Thuillot, W., Van Hemelryck, E., Burlacu, A., Lasne, Y., Managa, S.

论文摘要

欧洲领域的盖亚任务(DR3)的第三个数据发布是第一个为社区提供大量观察结果的版本,该观测值超过15万个太阳系对象,包括小行星和自然行星卫星。该释放包含天体(超过2300万个时代)和光度法,以及60518小行星的平均反射光谱和倾斜元件。我们概述了在Gaia可以达到的准确性级别处理太阳系数据的几年开发和测试中已实施的过程。我们用一些实际示例说明了数据属性和潜力。为了允许DR3的用户最好地利用数据,我们解释了实施太阳能系统处理的数据处理管道及其在数据过滤,优化和性能方面所遵循的假设和方法。然后,我们通过分析适应轨道的拟合后残差来测试数据质量,检测微妙的动力学效应的能力(由于卫星或形状和Yarkovsky加速而引起的微妙动力学效应),并繁殖小行星光度计的已知特性(相位曲线和旋转光曲线)。 DR3星体准确性比DR2中发布的数据有明显的改善,该数据涉及小行星样本非常有限。达到数据降低的性能,并通过检测小行星光中心的Milliarcsecond级摇摆的能力来说明,这是由于卫星或形状效应引起的,并有助于Yarkovsky效应测量。第三个数据发布可以从数据完整性和准确性方面,被认为是盖亚(Gaia)对太阳系调查的第一个全面实现。

The third data release by the Gaia mission of the European Space (DR3) is the first release to provide the community with a large sample of observations for more than 150 thousand Solar System objects, including asteroids and natural planetary satellites. The release contains astrometry (over 23 million epochs) and photometry, along with average reflectance spectra of 60518 asteroids and osculating elements. We present an overview of the procedures that have been implemented over several years of development and tests to process Solar System data at the level of accuracy that Gaia can reach. We illustrate the data properties and potential with some practical examples. In order to allow the users of DR3 to best exploit the data, we explain the assumptions and approaches followed in the implementation of the data processing pipeline for Solar System processing, and their effects in terms of data filtering, optimisation, and performances. We then test the data quality by analysing post-fit residuals to adjusted orbits, the capacity of detecting subtle dynamical effects (wobbling due to satellites or shape and Yarkovsky acceleration), and to reproduce known properties of asteroid photometry (phase curves and rotational light curves). The DR3 astrometric accuracy is a clear improvement over the data published in DR2, which concerned a very limited sample of asteroids. The performance of the data reduction is met, and is illustrated by the capacity of detecting milliarcsecond-level wobbling of the asteroid photocentre that is due to satellite or shape effects and contributes to Yarkovsky effect measurements. The third data release can in terms of data completeness and accuracy be considered the first full-scale realisation of the Solar System survey by Gaia.

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