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The solar nebula origin of (486958) Arrokoth, a primordial contact binary in the Kuiper Belt

机译:(486958)Arrokoth的太阳星云起源,在Kuiper皮带中是一种原始接触二进制

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摘要

The New Horizons spacecraft's encounter with the cold classical Kuiper Belt object (486958) Arrokoth (provisional designation 2014 MU69) revealed a contact-binary planetesimal. We investigated how Arrokoth formed and found that it is the product of a gentle, low-speed merger in the early Solar System. Its two lenticular lobes suggest low-velocity accumulation of numerous smaller planetesimals within a gravitationally collapsing cloud of solid particles. The geometric alignment of the lobes indicates that they were a co-orbiting binary that experienced angular momentum loss and subsequent merger, possibly because of dynamical friction and collisions within the cloud or later gas drag. Arrokoth's contact-binary shape was preserved by the benign dynamical and collisional environment of the cold classical Kuiper Belt and therefore informs the accretion processes that operated in the early Solar System.
机译:新的地平线宇宙飞船与冷古典kuiper皮带对象(486958)Arrokoth(临时指定2014 Mu69)揭示了联系二进制星系。我们调查了Arrokoth如何形成并发现它是早期太阳系中温和,低速合并的产品。它的两个透镜裂片表明了在重力塌陷的固体颗粒云中的许多小星系的低速累积。裂片的几何对准表明它们是经历角动量损失和随后的合并的共同轨道二进制,可能是因为云中的动态摩擦和碰撞或以后的气体阻力。 Arrokoth的接触二进制形状被冷古典基普尔带的良性动态和碰撞环境保存,因此通知了在早期太阳系中运行的增齿过程。

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  • 来源
    《Science》 |2020年第6481期|1000-1000|共1页
  • 作者单位

    Washington Univ Dept Earth & Planetary Sci St Louis MO 63130 USA|Washington Univ McDonnell Ctr Space Sci St Louis MO 63130 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA;

    CALTECH Div Geol & Planetary Sci Pasadena CA 91125 USA;

    Lowell Observ Flagstaff AZ 86001 USA|No Arizona Univ Dept Astron & Planetary Sci Flagstaff AZ 86011 USA;

    Univ Maryland Dept Astron College Pk MD 20742 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    NASA Ames Res Ctr Space Sci Div Moffett Field CA 94035 USA|SETI Inst Mountain View CA 94043 USA;

    Natl Sci Fdn Natl Opt Infrared Astron Res Lab Tucson AZ 85726 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    Johns Hopkins Univ Appl Phys Lab Laurel MD 20723 USA;

    Natl Res Council Canada Victoria BC V9E 2E7 Canada;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    NASA Ames Res Ctr Space Sci Div Moffett Field CA 94035 USA;

    Natl Res Council Canada Victoria BC V9E 2E7 Canada;

    Johns Hopkins Univ Appl Phys Lab Laurel MD 20723 USA;

    Washington Univ Dept Earth & Planetary Sci St Louis MO 63130 USA|Washington Univ McDonnell Ctr Space Sci St Louis MO 63130 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    SETI Inst Mountain View CA 94043 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    NASA Ames Res Ctr Space Sci Div Moffett Field CA 94035 USA;

    Southwest Res Inst Div Space Sci & Engn San Antonio TX 78238 USA|Univ Texas San Antonio Dept Phys & Astron San Antonio TX 78249 USA;

    Southwest Res Inst Div Space Sci & Engn San Antonio TX 78238 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

    Univ Virginia Dept Astron Charlottesville VA 22904 USA;

    Southwest Res Inst Div Space Sci & Engn Boulder CO 80302 USA;

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