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Empirical method of proper element calculation and identification of asteroid families

机译:小行星族正确元素计算和识别的经验方法

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A search for asteroid families was carried out with the use of a proper element set comprising 649 050 asteroid orbits. Proper elements were calculated by the empirical method. This method uses distributions of orbital elements to calculate secular perturbations. There are two types of secular perturbations: the classical perturbations and the Lidov-Kozai mechanism. The empirical method allows us to distinguish these perturbations in distributions of orbital elements. In this work, amplitudes of inclination and eccentricity oscillations were calculated for both types of perturbations, and thereafter the perturbations were excluded from the osculating elements one after another. The exclusion was made by means of the coordinate transformation formula. The method can be applied for high-inclination and resonant regions. The obtained proper elements are accurate enough to search for asteroid families. As a result, 141 asteroid families were identified in the interval of a semimajor axis 1.8-5.4 au.
机译:使用包括649 050个小行星轨道的适当元素集对小行星族进行了搜索。通过经验方法计算适当的元素。该方法使用轨道元素的分布来计算长期扰动。世俗扰动有两种类型:经典扰动和Lidov-Kozai机制。经验方法使我们能够区分轨道元素分布中的这些扰动。在这项工作中,计算了两种类型的摄动的倾角和偏心振荡的幅度,然后逐个从摄动元件中排除了摄动。排除是通过坐标变换公式进行的。该方法可以应用于高倾斜和共振区域。获得的适当元素足够准确,可以搜索小行星族。结果,在半长轴1.8-5.4 au的间隔内确定了141个小行星科。

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