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首页> 外文期刊>The Astrophysical journal >PLANET FORMATION AROUND LOW-MASS STARS: THE MOVING SNOW LINE AND SUPER-EARTHS
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PLANET FORMATION AROUND LOW-MASS STARS: THE MOVING SNOW LINE AND SUPER-EARTHS

机译:低质量恒星周围的行星形成:运动的下雪线和超地球

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We develop a semianalytic model for planet formation during the pre-main-sequence contraction phase of a low-mass star. During this evolution, the stellar magnetosphere maintains a fixed ratio between the inner disk radius and the stellar radius. As the star contracts at constant effective temperature, the "snow line," which separates regions of rocky planet formation from regions of icy planet formation, moves inward. This process enables rapid formation of icy protoplanets that collide and merge into super-Earths before the star reaches the main sequence. The masses and orbits of these super-Earths are consistent with super-Earths detected in recent microlensing experiments.
机译:我们为低质量恒星的主序前收缩阶段的行星形成开发了一个半解析模型。在这种演化过程中,恒星磁层在内部磁盘半径和恒星半径之间保持固定比率。当恒星在恒定的有效温度下收缩时,将岩石行星形成区域与冰行星形成区域分开的“雪线”向内移动。这个过程使冰原行星的快速形成成为可能,它们在恒星到达主序之前会碰撞并合并成超地球。这些超地球的质量和轨道与最近的微透镜实验中检测到的超地球一致。

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