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ON THE FREQUENCY OF POTENTIAL VENUS ANALOGS FROM KEPLER DATA

机译:从开普勒数据看潜在金星模拟的频率

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The field of exoplanetary science has seen a dramatic improvement in sensitivity to terrestrial planets over recent years. Such discoveries have been a key feature of results from the Kepler mission which utilizes the transit method to determine the size of the planet. These discoveries have resulted in a corresponding interest in the topic of the Habitable Zone and the search for potential Earth analogs. Within the solar system, there is a clear dichotomy between Venus and Earth in terms of atmospheric evolution, likely the result of the large difference (approximately a factor of two) in incident flux from the Sun. Since Venus is 95% of the Earth’s radius in size, it is impossible to distinguish between these two planets based only on size. In this Letter we discuss planetary insolation in the context of atmospheric erosion and runaway greenhouse limits for planets similar to Venus. We define a “Venus Zone” in which the planet is more likely to be a Venus analog rather than an Earth analog. We identify 43 potential Venus analogs with an occurrence rate (η_♀) of 0.32_(?0.07)~(+0.05) and 0.45_(?0.09)~(+0.06) for M dwarfs and GK dwarfs, respectively.
机译:近年来,系外行星科学领域对地球行星的敏感性有了显着提高。这些发现一直是开普勒任务结果的关键特征,该任务利用运输方法确定行星的大小。这些发现引起了人们对“宜居区”和寻找潜在地球类似物的兴趣。在太阳系内,金星与地球之间在大气演化方面存在明显的二分法,这很可能是来自太阳的入射通量相差很大(大约两倍)的结果。由于金星的大小是地球半径的95%,因此无法仅根据大小来区分这两个行星。在这封信中,我们讨论了类似于金星的大气侵蚀和失控的温室气体限制下的行星日照。我们定义了一个“维纳斯区”,在该区域中,行星更可能是维纳斯类比而不是地球类似物。我们确定了43个潜在的金星类似物,其中M矮星和GK矮星的发生率(η_♀)分别为0.32 _(?0.07)〜(+0.05)和0.45 _(?0.09)〜(+0.06)。

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