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首页> 外文期刊>The astronomical journal >The Influence of Orbital Resonances on the Water Transport to Objects in the Circumprimary Habitable Zone of Binary Star Systems
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The Influence of Orbital Resonances on the Water Transport to Objects in the Circumprimary Habitable Zone of Binary Star Systems

机译:轨道共振对水向双星系统周生可居住区物体的输运的影响

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摘要

We investigate the role of secular and mean motion resonances on the water transport from a belt of icy asteroids onto planets or embryos orbiting inside the circumprimary habitable zone (HZ) of a binary star system. In addition, the host-star has an accompanying gas giant planet. For a comparison, we perform two case?studies where a secular resonance (SR) is located either inside the HZ close to 1.0 au (causing eccentric motion of a planet or embryos therein) or in the asteroid belt, beyond the snow line. In the latter case, a higher flux of icy objects moving toward the HZ is expected. Collisions between asteroids and objects in the HZ are treated analytically. Our purely dynamical study shows that the SR in the HZ boosts the water transport;?however, collisions can occur at very high impact speeds. In this paper, we treat for the first time, realistic collisions using a GPU 3D-SPH code to assess the water loss in the projectile. Including the water loss into the dynamical results, we get more realistic values for the water mass fraction of the asteroid during an impact. We highlight that collisions occurring at high velocities greatly reduce the water content of the projectile and thus the amount of water transported to planets or embryos orbiting inside the HZ. Moreover, we discuss other effects that could modify our results, namely?the asteroid's surface rate recession due to ice sublimation and the atmospheric drag contribution on the asteroids' mass loss.
机译:我们调查了从冰冷的小行星带到行星或胚胎在双星系统的周生可居住区(HZ)内轨道运行的水输送上的长期运动和平均运动共振的作用。此外,这颗主机星还伴有一个天然气巨行星。为了进行比较,我们进行了两个案例研究,其中世俗共振(SR)位于HZ内部接近1.0 au(导致行星或其中的胚胎的偏心运动)或小行星带中,超过雪线。在后一种情况下,预计冰物体通向HZ的通量会更高。分析性地处理了小行星与HZ中物体之间的碰撞。我们的纯粹动力学研究表明,HZ中的SR促进了水的传输;但是,在极高的撞击速度下可能会发生碰撞。在本文中,我们首次使用GPU 3D-SPH代码来处理逼真的碰撞,以评估弹丸中的水分流失。将失水量纳入动力学结果中,我们可以得出撞击过程中小行星的水质量分数的更实际值。我们强调指出,高速发生的碰撞会大大降低弹丸的水分含量,从而减少了水运到HZ内部运行的行星或胚胎的水量。此外,我们还讨论了其他可能改变结果的效应,即由于冰升华引起的小行星表面速率下降以及大气阻力对小行星质量损失的贡献。

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