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Identifying Interstellar Objects Trapped in the Solar System through Their Orbital Parameters

机译:通过其轨道参数识别在太阳系中捕获的星际物体

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The first interstellar object, 'Oumuamua, was discovered in the solar system by Pan-STARRS in 2017, allowing for a calibration of the abundance of interstellar objects of its size and an estimation of the subset of objects trapped by the Jupiter-Sun system. Photographing or visiting these trapped objects would allow us to learn about the conditions in other planetary systems, relieving the need to send interstellar probes. Here, we explore the orbital properties of captured interstellar objects in the solar system using dynamical simulations of the Jupiter-Sun system and initial conditions drawn from the distribution of relative velocities of stars in the Solar neighborhood. We compare the resulting distributions of orbital elements to those of the most similar population of known asteroids, namely Centaurs, to search for a parameter space in which interstellar objects should dominate and therefore be identifiable solely by their orbits. We find that there should be thousands of 'Oumuamua-size interstellar objects identifiable by Centaur-like orbits at high inclinations, assuming a number density of 'Oumuamua-size interstellar objects of ~10~(15) pc~(?3). We note eight known objects that may be of interstellar origin. Finally, we estimate that the Large Synoptic Survey Telescope will be able to detect several hundreds of these objects.
机译:第一个星际对象,'Oumuamua,于2017年通过Pan-Starrs在太阳系中发现,允许校准其大小的尺寸的丰富物体,并估计由木星太阳系被捕获的物体子集。拍摄或访问这些被困物体将使我们能够了解其他行星系统中的条件,缓解发送星际探针的需要。在这里,我们使用木星 - 太阳系的动态模拟和从太阳能邻域中的恒星相对速度分布中汲取的初始条件,探讨太阳系中捕获的星际物体的轨道特性。我们将所得轨道元素分布与最相似的已知小行星群体,即半个半人马的分布进行比较,以寻找一个参数空间,其中星际物体应该占主导地位,因此完全由其轨道识别。我们发现应该有数千个'Oumuamua大小的星际物体在高倾斜度上由半中心轨道可识别,假设“Oumuamua尺寸的〜10〜(15)pc〜(?3)的数量密度”Oumuamua-size对象“。我们注意到八个可知的物体,可能是星际起源。最后,我们估计大型舞台调查望远镜将能够检测几百个这些物体。

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