论文标题

使用盖亚(Gaia)的差分天文统计:研究相对论光挠度靠近木星

Differential Astrometry with Gaia: Investigating relativistic light deflection close to Jupiter

论文作者

Abbas, U., Bucciarelli, B., Lattanzi, M. G., Crosta, M., Morbidelli, R., Busonero, D., Bramante, L., Messineo, R.

论文摘要

在本文中,我们开发了一个差异的天文框架,该框架适用于扫描空间卫星(例如Gaia)。我们将其应用于GAREQ领域的第一个领域,这是Gaia项目中专门努力的果实,旨在衡量靠近木星肢体的光的相对论偏转。这提供了:a)靠近木星的光的相对论偏转的可观察性,以及,b)gaia在极其困难的条件下(例如明亮的扩展物体周围的范围)的星形能力。我们的差分天体模型的输入是由IDU系统测量的CCD运输时间,通过AGIS几何校准转换为场角,以及指挥/名义的航天器态度。 [abridged] To illustrate the model we analyze Gaia astrometric measurements after their calibration through the latest cyclic EDR3/DR3 processing of the GAREQ event of Feb 2017. We use observations of the closest bright target star successfully observed several times by Gaia in close proximity to Jupiter and surrounding reference stars brighter than G<13 mag in transits leading up to the time of closest approach and on subsequent transits.目标恒星在最接近的方法下以50的S/N检测到相对论偏转信号。该信号是由于木星和太阳引起的综合效果,主要由木星的单子座支配,表明在极端的观察条件下,盖亚的科学表现。由于以下原因,这是一个前所未有的检测:a)在光学中最接近木星的肢体(〜7英寸),b)b)在任何波长下最高的s/n。最后,这项工作为解散相关性四倍体偏移而与未来的Gaia差异相关的四倍体偏转奠定了基础。

In this paper we develop a differential astrometric framework that is appropriate for a scanning space satellite such as Gaia. We apply it to the first of the GAREQ fields, which is the fruit of dedicated efforts within the Gaia project focused on measuring the relativistic deflection of light close to Jupiter's limb. This provides a preliminary assessment of: a) the observability of the relativistic deflection of light close to Jupiter, and, b) Gaia's astrometric capabilities under extremely difficult conditions such as those around a bright extended object. Inputs to our differential astrometric model are the CCD transit times as measured by the IDU system, transformed to field angles via AGIS geometric calibrations, and the commanded/nominal spacecraft attitude. [abridged] To illustrate the model we analyze Gaia astrometric measurements after their calibration through the latest cyclic EDR3/DR3 processing of the GAREQ event of Feb 2017. We use observations of the closest bright target star successfully observed several times by Gaia in close proximity to Jupiter and surrounding reference stars brighter than G<13 mag in transits leading up to the time of closest approach and on subsequent transits. The relativistic deflection signal is detected with a S/N of 50 at closest approach by the target star. This signal is the combined effect due to Jupiter and the Sun, mainly dominated by Jupiter's monopole, demonstrating Gaia's scientific performance under extreme observational conditions. It is an unprecedented detection for the following reasons: a) closest ever to Jupiter's limb (~7") in the optical, and, b) highest S/N at any wavelength. Finally, this work sets the stage for investigations into disentangling the relativistic quadrupole deflection due to Jupiter with future Gaia astrometric measurements.

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