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The Pan‐Pacific Planet Search: A Southern Hemisphere Search for Planets Orbiting Evolved Massive Stars

机译:泛太平洋行星搜索:南半球搜索绕质量恒星运行的行星

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摘要

The vast majority of known extrasolar planets orbit stars with a narrow range of masses (0.7–1.3 M⊙). Little is known about the properties of planetary systems with host stars significantly more massive than the Sun. Planet formation models predict that giant planets are more common around higher‐mass stars (M* >1.5 M⊙ ). However, these types of stars pose severe observational challenges while on the main sequence, resulting in a strong bias against them in current planet searches. Fortunately, it is possible to obtain high‐precision Doppler velocities for these massive stars as they evolve off the main sequence and cool as sub‐giants. We describe the Pan‐Pacific Planet Search, a survey of 170 sub‐giant stars using the 3.9 m Australian Astronomical Telescope. In collaboration with J. Johnson’s Keck survey of Northern “retired A stars,” we are monitoring nearly every subgiant brighter than V = 8. This survey will provide critical statistics on the frequency and characteristics of planetary systems formed around higher‐mass stars.
机译:绝大多数已知的太阳系外行星绕质量范围很窄(0.7–1.3M⊙)的恒星运行。人们对行星系统的性质知之甚少,这些行星的主恒星比太阳大得多。行星形成模型预测,在高质量恒星(M *> 1.5> M)附近,巨型行星更为常见。但是,这些类型的恒星在主序上会带来严峻的观测挑战,从而导致在当前行星搜索中对它们的强烈偏见。幸运的是,当这些大质量恒星从主序中演化出来并作为副巨星变冷时,它们可以获得高精度的多普勒速度。我们描述了使用3.9 m澳大利亚天文望远镜对170颗超巨型恒星进行的泛太平洋行星搜索。与约翰逊(J. Johnson)的凯克(Keck)对北部“退休的A颗恒星”的调查合作,我们正在监视几乎所有比V = 8亮的亚子。该调查将提供有关围绕高质量恒星形成的行星系统的频率和特征的重要统计数据。

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