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Episodic formation of cometary material in the outburst of a young Sun-like star

机译:一颗类似太阳的年轻恒星爆发时彗星物质的情景形成

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摘要

The Solar System originated in a cloud of interstellar gas and dust. The dust is in the form of amorphous silicate particles(1,2) and carbonaceous dust. The composition of cometary material, however, shows that a significant fraction of the amorphous silicate dust was transformed into crystalline form during the early evolution of the protosolar nebula(3). How and when this transformation happened has been a question of debate, with the main options being heating by the young Sun(4,5) and shock heating(6). Here we report mid-infrared features in the outburst spectrum of the young Sun-like star EX Lupi that were not present in quiescence. We attribute them to crystalline forsterite. We conclude that the crystals were produced through thermal annealing in the surface layer of the inner disk by heat from the outburst, a process that has hitherto not been considered. The observed lack of cold crystals excludes shock heating at larger radii.
机译:太阳系起源于星际气体和尘埃云。粉尘为无定形硅酸盐颗粒(1,2)和含碳粉尘。然而,彗星物质的组成表明,在原生质星云的早期演化过程中,很大一部分非晶硅酸盐粉尘转化为结晶形式(3)。这种转变如何以及何时发生一直是一个争论的问题,主要选择是由年轻的太阳加热(4,5)和冲击加热(6)。在这里,我们报告了年轻的类太阳恒星EX Lupi的爆发光谱中处于静止状态的中红外特征。我们将其归因于结晶镁橄榄石。我们得出的结论是,晶体是通过爆发的热量通过在内盘表面层中进行热退火而产生的,这一过程至今尚未考虑。观察到的缺乏冷晶体,排除了较大半径下的冲击加热。

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