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Discovery of the first Earth-sized planets orbiting a star other than our Sun in the Kepler-20 system

机译:在开普勒20系统中发现首颗绕我们恒星运行的恒星绕地球旋转的行星

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Discovering other worlds the size of our own has been a long-held dream of astronomers. The transiting planets Kepler-20 e and Kepler-20 f, which belong to a multi-planet system, hold a very special place among the many groundbreaking discoveries of theKeplermission because they finally realized that dream. The radius of Kepler-20 f is essentially identical to that of the Earth, while Kepler-20 e is even smaller (0.87 R⊕), and was the first exoplanet to earn that distinction. Their masses, however, are too light to measure with current instrumentation, and this has prevented their confirmation by the usual Doppler technique that has been used so successfully to confirm many other larger planets. To persuade themselves of the planetary nature of these tiny objects, astronomers employed instead a statistical technique to “validate” them, showing that the likelihood they are planets is orders of magnitude larger than a false positive. Kepler-20 e and 20 f orbit their Sun-like star every 6.1 and 19.6 days, respectively, and are most likely of rocky composition. Here we review the history of how they were found, and present an overview of the methodology that was used to validate them.
机译:发现我们自己大小的其他世界一直是天文学家梦dream以求的梦想。属于多行星系统的过时行星开普勒20 e和开普勒20 f在开普勒密斯的众多突破性发现中占有非常特殊的位置,因为它们终于实现了这一梦想。开普勒20 f的半径基本上与地球相同,而开普勒20 e的半径甚至更小(0.87R⊕),并且是第一个获得这种区别的系外行星。然而,它们的质量太轻,无法用当前的仪器进行测量,这妨碍了通过通常的多普勒技术对其进行确认,该技术已成功地用于确认许多其他较大的行星。为了说服这些微小物体的行星性质,天文学家采用一种统计技术来“验证”它们,表明它们是行星的可能性比假阳性要大几个数量级。开普勒20e和20f分别每6.1天和19.6天绕着它们的太阳状恒星运行一次,并且很可能具有岩石成分。在这里,我们回顾了如何找到它们的历史,并提供了用于验证它们的方法的概述。

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