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Constraints on the near-Earth asteroid obliquity distribution from the Yarkovsky effect

机译:Yarkovsky效应对近地小行星倾角分布的约束

摘要

Aims. From lightcurve and radar data we know the spin axis of only 43 near-Earth asteroids. In this paper we attempt to constrain the spin axis obliquity distribution of near-Earth asteroids by leveraging the Yarkovsky effect and its dependence on an asteroid’s obliquity. Methods. By modeling the physical parameters driving the Yarkovsky effect, we solve an inverse problem where we test different simple parametric obliquity distributions. Each distribution results in a predicted Yarkovsky effect distribution that we compare with a chi^2 test to a dataset of 125 Yarkovsky estimates. Results. We find different obliquity distributions that are statistically satisfactory. In particular, among the considered models, the best-fit solution is a quadratic function, which only depends on two parameters, favors extreme obliquities, consistent with the expected outcomes from the YORP effect, has a 2:1 ratio between retrograde and direct rotators, which is in agreement with theoretical predictions, and is statistically consistent with the distribution of known spin axes of near-Earth asteroids.
机译:目的根据光曲线和雷达数据,我们知道只有43个近地小行星的自旋轴。在本文中,我们试图利用Yarkovsky效应及其对小行星倾角的依赖性,来限制近地小行星的自旋轴倾角分布。方法。通过对驱动Yarkovsky效应的物理参数进行建模,我们解决了一个反问题,在该问题中我们测试了不同的简单参数倾斜度分布。每个分布都会产生预测的Yarkovsky效应分布,我们将其与chi ^ 2检验进行比较,得出125个Yarkovsky估计值的数据集。结果。我们发现不同的倾角分布在统计上令人满意。特别是,在考虑的模型中,最合适的解决方案是二次函数,该函数仅取决于两个参数,有利于极度倾斜,与YORP效果的预期结果一致,逆行和直接旋转之间的比例为2:1 ,这与理论预测相符,并且在统计上与近地小行星已知自旋轴的分布一致。

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