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The building blocks of planets within the 'terrestrial' region of protoplanetary disks

机译:在原行星盘“陆地”区域内的行星的构建基块

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Our Solar System was formed from a cloud of gas and dust. Most of the dust mass is contained in amorphous silicates(1), yet crystalline silicates are abundant throughout the Solar System, reflecting the thermal and chemical alteration of solids during planet formation. (Even primitive bodies such as comets contain crystalline silicates(2).) Little is known about the evolution of the dust that forms Earth-like planets. Here we report spatially resolved detections and compositional analyses of these building blocks in the innermost two astronomical units of three proto-planetary disks. We find the dust in these regions to be highly crystallized, more so than any other dust observed in young stars until now. In addition, the outer region of one star has equal amounts of pyroxene and olivine, whereas the inner regions are dominated by olivine. The spectral shape of the inner-disk spectra shows surprising similarity with Solar System comets. Radial-mixing models naturally explain this resemblance as well as the gradient in chemical composition. Our observations imply that silicates crystallize before any terrestrial planets are formed, consistent with the composition of meteorites in the Solar System.
机译:我们的太阳系由气体和尘埃云组成。大部分尘埃都包含在无定形硅酸盐中(1),但整个太阳系中都富含结晶硅酸盐,这反映了行星形成过程中固体的热化学变化。 (甚至像彗星这样的原始物体也含有结晶硅酸盐(2)。)人们对形成类地行星的尘埃的演化知之甚少。在这里,我们报告了三个原行星盘最里面两个天文单元中这些构件的空间分辨探测和成分分析。我们发现这些区域中的尘埃高度结晶,比迄今为止在年轻恒星中观察到的任何其他尘埃都高。此外,一颗恒星的外部区域具有等量的辉石和橄榄石,而内部区域以橄榄石为主。内盘光谱的光谱形状显示出与太阳系彗星的惊人相似性。径向混合模型自然可以解释这种相似性以及化学成分的梯度。我们的观察结果表明,硅酸盐在形成任何地球行星之前就已经结晶,这与太阳系中陨石的成分一致。

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