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New catalogue of one-apparition comets discovered in the years 1901–1950 - I. Comets from the Oort spike

机译:1901年至1950年间发现的单视彗星的新目录-I.奥尔特峰的彗星

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Context. The orbits of one-apparition comets discovered in the early part of the last century have formerly been determined with very different numerical methods and assumptions on the model of the solar system, including the number of planets taken into account. Moreover, observations of the comet-minus-star-type sometimes led to determination of the comet position that are less precise than what we can derive today by using a more modern star catalogue. Aims. We aim to provide a new catalogue of cometary orbits that are derived using a completely homogeneous data treatment, accurate numerical integration, and a modern model of the solar system. Methods. We collected the complete sets of observations for investigated comets from the original publications. Then we recalculated the cometary positions for the comet-minus-star-type of observations using the Positions and Proper Motions Star Catalogue, and applied a uniform method for the data selection and weighting. As a final result, new osculating orbits were determined. Secondly, dynamical calculations were performed to the distance of 250?AU from the Sun to derive original and future barycentric orbits for evolution backward and forward in time. These numerical calculations for a given object start from a swarm of virtual comets constructed using our osculating (nominal) orbit. In this way, we obtained the orbital element uncertainties of original and future barycentric orbits. Results. We present homogeneous sets of orbital elements for osculating, original, and future orbits for 38 one-apparition comets. Non-gravitational orbits are derived for thirteen of them.
机译:上下文。上世纪初发现的一次幻影彗星的轨道以前是用非常不同的数值方法和对太阳系模型的假设(包括所考虑的行星数)来确定的。此外,对彗星减星型的观测有时导致确定彗星位置的准确性不如我们今天通过使用更现代的星表得出的精确度。目的我们旨在提供一种使用完全同质的数据处理,精确的数值积分和现代的太阳系模型得出的新的彗星轨道目录。方法。我们从原始出版物中收集了完整的观测彗星观测资料。然后,我们使用“位置和适当运动之星”目录重新计算了彗星减去星型观测的彗星位置,并为数据选择和加权应用了统一的方法。作为最终结果,确定了新的振荡轨道。其次,对距太阳250?AU的距离进行动力学计算,得出原始的和未来的重心轨道,以便及时地向前和向后演化。给定对象的这些数值计算从使用我们的振荡(名义)轨道构造的虚拟彗星群开始。这样,我们获得了原始和未来重心轨道的轨道元素不确定性。结果。我们提出了38个单向彗星的轨道,原始轨道和未来轨道的同构轨道元素集。非引力轨道导出了其中的13个。

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