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首页> 外文期刊>Icarus: International Journal of Solar System Studies >Protoplanetary dust porosity and FU Orionis outbursts: Solving the mystery of Earth's missing volatiles
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Protoplanetary dust porosity and FU Orionis outbursts: Solving the mystery of Earth's missing volatiles

机译:原行星尘孔和FU Orionis爆发:解决了地球遗失挥发物的奥秘

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The Earth is known to be depleted in volatile lithophile elements in a fashion that defies easy explanation. We resolve this anomaly with a model that combines the porosity of collisionally grown dust grains in protoplanetary disks with heating from FU Orionis events that dramatically raise protoplanetary disk temperatures. The heating from an FU Orionis event alters the aerodynamical properties of the dust while evaporating the volatiles. This causes the dust to settle, abandoning those volatiles. The success of this model in explaining the elemental composition of the Earth is a strong argument in favor of highly porous collisionally grown dust grains in protoplanetary disks outside our Solar System. Further, it demonstrates how thermal (or condensation based) alterations of dust porosity, and hence aerodynamics, can be a strong factor in planet formation, leading to the onset of rapid gravitational instabilities in the dust disk and the subsequent collapse that forms planetesimals.
机译:众所周知,地球缺乏易解释的挥发性贫化亲石元素。我们用一个模型解决了这个异常,该模型将原行星盘中碰撞生长的尘埃颗粒的孔隙度与FU Orionis事件产生的热量相结合,极大地提高了原行星盘的温度。 FU Orionis事件产生的热量会在蒸发挥发物的同时改变灰尘的空气动力学特性。这会导致尘埃沉淀,从而消除了这些挥发物。该模型成功地解释了地球的元素组成,这是一个强有力的论据,它支持在太阳系外的原行星盘中高度多孔地碰撞生长的尘埃颗粒。此外,它证明了粉尘孔隙度的热(或基于凝结)变化以及空气动力学如何成为行星形成的重要因素,从而导致了尘埃盘中重力的快速不稳定以及随后形成行星小行星的坍塌的发生。

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