论文标题
Centaur Bionor于2019年1月11日由Centaur Bionor杀死的多件恒星掩星
The multichord stellar occultation by the centaur Bienor on January 11, 2019
论文作者
论文摘要
在我们对跨纳普族对象和半人马的物理表征的计划中,我们预测了Centaur(54598)Bienor的出色掩星将于2019年1月11日发生,具有良好的可观察性潜力。我们获得了高精度的天文数据以完善预测,从而产生了有利于伊比利亚半岛的阴影路径。这鼓励我们开展一项宣传观察运动,从而从四个观测站点产生了五次积极检测。到目前为止,已经观察到了多叠(超过两个和弦)恒星掩星的第四个半人马座,其他三个是(2060)Chiron,(10199)Chariklo和(95626)2002 GZ $ _ {32} $。通过对掩盖后不久获得的螺型和弦的分析,结合了固有的旋转光曲线,我们确定BIENOR的面积等于$ 150 \ pm20 $ km。该直径为$ \ sim30 $公里,比从热测量中获得的直径小。通过分析恒星掩星获得的最佳拟合椭圆的短轴的位置角与从长期光度模型中得出的旋转轴的位置角不匹配。我们还检测到在旋转光曲线的最小值之一中,无论进行观测值的方面角度如何。我们提出不同的方案,以调和不同技术的结果。我们没有检测到与潜在环或卫星有关的次要滴。尽管如此,由于数据的准确性较低,因此不能丢弃与Chariklo的大小相似的环。
Within our program of physical characterization of trans-Neptunian objects and centaurs, we predicted a stellar occultation by the centaur (54598) Bienor to occur on January 11, 2019, with good observability potential. We obtained high accuracy astrometric data to refine the prediction, resulting in a shadow path favorable for the Iberian Peninsula. This encouraged us to carry out an occultation observation campaign that resulted in five positive detections from four observing sites. This is the fourth centaur for which a multichord (more than two chords) stellar occultation has been observed so far, the other three being (2060) Chiron, (10199) Chariklo, and (95626) 2002 GZ$_{32}$. From the analysis of the occultation chords, combined with the rotational light curve obtained shortly after the occultation, we determined that Bienor has an area-equivalent diameter of $150\pm20$ km. This diameter is $\sim30$ km smaller than the one obtained from thermal measurements. The position angle of the short axis of the best fitting ellipse obtained through the analysis of the stellar occultation does not match that of the spin axis derived from long-term photometric models. We also detected a strong irregularity in one of the minima of the rotational light curve that is present no matter the aspect angle at which the observations were done. We present different scenarios to reconcile the results from the different techniques. We did not detect secondary drops related to potential rings or satellites. Nonetheless, similar rings in size to that of Chariklo's cannot be discarded due to low data accuracy.