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Development of a Realistic Set of Synthetic Earth Impactor Orbits

机译:一套现实的合成地球撞击轨道的发展

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We present a refined method for creating orbits of fictitious Earth impactors that are representative of the actual impactor population. Such orbits are crucial inputs to a variety of investigations, such as those that seek to discern how well and how early a particular asteroid survey can detect impactors, or to understand the progression of impact probability as an object is tracked after discovery. We will describe our method, which relies on Öpik's b-plane formalism, and place it in context with previous approaches. While the Öplk framework assumes the restricted three body problem with a circular Earth orbit, our final synthetic impactors are differentially corrected to ensure an impact in the N-body dynamics of the solar system. We also test the validity of the approach through brute force numerical tests, demonstrating that the properties of our synthetic impactor population are consistent with the underlying Near-Earth Object (NEO) population from which it is derived. The impactor population is, however, distinct from the NEO population, not only by virtue of the proximity of the asteroid orbit to that of the Earth, but also because low encounter velocities are strongly favored. Thus the impacting population has an increased prominence of low inclination and low eccentricity orbits, and Earth-like orbits in particular, as compared to the NEO population as a whole.
机译:我们提出一种精确的方法来创建虚拟的地球撞击者的轨道,这些撞击者代表实际的撞击者总数。这样的轨道是各种调查的关键输入,例如那些试图辨别特定小行星调查可以多好以及多早能探测到撞击者,或者在发现后追踪物体时了解撞击概率的进展的轨道。我们将描述我们的方法,该方法依赖于Öpik的b平面形式主义,并将其与先前的方法结合使用。尽管Öplk框架假设了圆形地球轨道的三体受限问题,但我们对最终的合成撞击器进行了微分校正,以确保对太阳系N体动力学产生影响。我们还通过蛮力数值测试测试了该方法的有效性,证明了我们的合成撞击物种群的性质与从其衍生的潜在近地物体(NEO)种群是一致的。但是,撞击者种群不同于NEO种群,这不仅是由于小行星轨道与地球轨道的接近性,而且还因为强烈希望低相遇速度。因此,与整个NEO人口相比,受影响人口的低倾斜度和低偏心率轨道(尤其是类地轨道)的突出度更高。

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