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No stellar p-mode oscillations in space-based photometry of Procyon

机译:Procyon的天基光度法中没有恒星的p模振荡

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Pressure-driven (p-mode) oscillations at the surface of the Sun, resulting from sound waves travelling through the solar interior, are a powerful probe of solar structure, just as seismology can reveal details about the interior of the Earth. Astronomers have hoped to exploit p-mode asteroseismology(1) in Sun-like stars to test detailed models of stellar structure and evolution, but the observations are extremely difficult. The bright star Procyon has been considered one of the best candidates for asteroseismology, on the basis of models and previous reports(2-8) of p-modes detected in ground-based spectroscopy. Here we present a search for p-modes in 32 days of nearly continuous photometric satellite-based observations of Procyon. If there are p-modes in Procyon, they must have lifetimes less than 2-3 days and/or peak amplitudes <15 parts per million, which defy expectations from the Sun's oscillations and previous theoretical predictions. Target selection for future planned asteroseismology space missions may need to be reconsidered, as will the theory of stellar oscillations.
机译:声波在太阳内部传播时,由太阳驱动的压力驱动(p模式)振荡是对太阳结构的有力探测,就像地震学可以揭示有关地球内部的细节一样。天文学家希望利用太阳系恒星中的p型星震学(1)来测试恒星结构和演化的详细模型,但是观测非常困难。根据地面光谱学中检测到的p模式的模型和以前的报道(2-8),明亮的恒星Procyon被认为是最佳的地震学候选人之一。在这里,我们提出了对Procyon近32天基于卫星的连续光度学观测中的p型搜索。如果Procyon中存在p模式,则它们的寿命必须少于2-3天和/或峰值幅度小于百万分之15,这违背了太阳振荡和先前理论预测的预期。可能需要重新考虑未来计划的星震学太空任务的目标选择,以及恒星振荡理论。

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