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The delivery of water by impacts from planetary accretion to present

机译:通过行星积聚到现在的影响来输送水

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摘要

Dynamical models and observational evidence indicate that water-rich asteroids and comets deliver water to objects throughout the solar system, but the mechanisms by which this water is captured have been unclear. New experiments reveal that impact melts and breccias capture up to 30% of the water carried by carbonaceous chondrite–like projectiles under impact conditions typical of the main asteroid belt impact and the early phases of planet formation. This impactor-derived water resides in two distinct reservoirs: in impact melts and projectile survivors. Impact melt hosts the bulk of the delivered water. Entrapment of water within impact glasses and melt-bearing breccias is therefore a plausible source of hydration features associated with craters on the Moon and elsewhere in the solar system and likely contributed to the early accretion of water during planet formation.
机译:动力学模型和观测证据表明,富含水的小行星和彗星将水输送到整个太阳系中的物体,但是捕获水的机制尚不清楚。新的实验表明,在典型的小行星带撞击和行星形成初期,典型的撞击条件下,撞击融化和角砾岩最多可捕获碳质球粒状类似弹丸携带的30%的水。这种来自撞击物的水位于两个不同的水库中:撞击熔体和射弹幸存者。冲击熔体容纳了输送的大部分水。因此,在撞击玻璃和带有熔岩的角砾岩中截留的水是与月球和太阳系其他地方的陨石坑相关的水合特征的合理来源,可能有助于行星形成过程中水的早期积聚。

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