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The Feasibility and Benefits of In Situ Exploration of ‘Oumuamua-like Objects

机译:原产地勘探“ Oumuamua”类物体的可行性和益处

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A rapid accumulation of observations and interpretation has followed in the wake of 1I ‘Oumuamua’s passage through the inner solar system. We briefly outline the consequences that this first detection of an interstellar asteroid implies for the planet-forming process, and we assess the near-term prospects for detecting and observing (both remotely and in situ) future solar system visitors of this type. Drawing on detailed heat-transfer calculations that take both ‘Oumuamua’s unusual shape and its chaotic tumbling into account, we affirm that the lack of a detectable coma in deep images of the object very likely arises from the presence of a radiation-modified coating of high molecular weight material (rather than a refractory bulk composition). Assuming that ‘Oumuamua is a typical representative of a larger population with a kinematic distribution similar to Population I stars in the local galactic neighborhood, we calculate expected arrival rates, impact parameters, and velocities of similar objects and assess their prospects for detection using operational and forthcoming facilities. Using ‘Oumuamua as a proof of concept, we assess the prospects for missions that intercept interstellar objects using conventional chemical propulsion. Using a “launch on detection” paradigm, we estimate wait times of order of 10 years between favorable mission opportunities with the detection capabilities of the Large-scale Synoptic Survey Telescope, a figure that will be refined as the population of interstellar asteroids becomes observationally better constrained.
机译:1I“ Oumuamua”穿过内部太阳系之后,观测和解释迅速积累。我们简要概述了首次探测到星际小行星对行星形成过程的影响,并评估了探测和观测(远程和就地)此类太阳系未来访客的近期前景。利用详细的传热计算,同时考虑了Oumuamua的不寻常形状和混沌翻滚,我们确认物体的深层图像中缺乏可检测到的昏迷很可能是由于存在高强度的辐射改性涂层而引起的。分子量的材料(而不是耐火的松散成分)。假设“ Oumuamua”是一个较大运动人口的典型代表,其运动学分布与当地银河系附近的I类恒星相似,我们可以计算出预期到达率,撞击参数和相似物体的速度,并评估它们的可操作性和可探测性。即将到来的设施。以“ Oumuamua”作为概念验证,我们评估了使用常规化学推进器拦截星际物体的任务前景。使用“发射时探测”范例,我们可以通过大型天气观测望远镜的探测能力估计两次良好的任务机会之间的等待时间为10年,该数字将随着星际小行星数量的增加而得到改善。受约束的。

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