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Metallicity of Sun-like G-stars that have Exoplanets

机译:阳光样G-恒星的金属性

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By considering the physical and orbital characteristics of G type stars and their exoplanets, we examine the association between stellar mass and its metallicity that follows a power law. Similar relationship is also obtained in case of single and multiplanetary stellar systems suggesting that, Sun's present mass is about 1% higher than the estimated value for its metallicity. Further, for all the stellar systems with exoplanets, association between the planetary mass and the stellar metallicity is investigated, that suggests planetary mass is independent of stellar metallicity. Interestingly, in case of multiplanetary systems, planetary mass is linearly dependent on the stellar absolute metallicity, that suggests, metal rich stars produce massive (>= 1 Jupiter mass) planets compared to metal poor stars. This study also suggests that there is a solar system planetary missing mass of similar to 0.8 Jupiter mass. It is argued that probably 80% of missing mass is accreted onto the Sun and about 20% of missing mass might have been blown off to the outer solar system (beyond the present Kuiper belt) during early history of solar system formation. We find that, in case of single planetary systems, planetary mass is independent of stellar metallicity with an implication of their non-origin in the host star's protoplanetary disk and probably are captured from the space. Final investigation of dependency of the orbital distances of planets on the host stars metallicity reveals that inward migration of planets is dominant in case of single planetary systems supporting the result that most of the planets in single planetary systems are captured from the space.
机译:通过考虑G型恒星及其外产的物理和轨道特征,我们研究了恒星质量与其金属性的关联,遵循权力法。在单个和多平面的恒星系统的情况下,也可以获得类似的关系,表明,Sun的目前的质量比其金属性的估计值高约1%。此外,对于具有外部恒星的所有恒星系统,研究了行星物质和恒星金属之间的关联,表明行星质量与恒星金属性无关。有趣的是,在多平面系统的情况下,行星质量依赖于恒星绝对金属性,这表明,与金属差的恒星相比,金属富恒星产生了大规模(> = 1个木星质量)行星。本研究还表明,太阳系行星缺失质量与0.8木星质量相似。有人认为,可能在太阳系形成的早期历史期间,大约80%的缺失质量被吸收到太阳上,大约20%的缺失质量可能被吹走到外太阳系统(超越当前的Kuiper皮带)。我们发现,在单行星系统的情况下,行星物质与恒星金属性无关,在宿主星的原子层盘中的非原点含义,并且可能从空间中捕获。最后调查主体恒星的行星的轨道距离依赖性的依赖性揭示了行星的内向迁移在支持单个行星系统的情况下,该结果支持的结果是从空间捕获单个行星系统中的大多数行星。

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