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Signs of deep mixing in starspot variability

机译:星点变化中深度混合的迹象

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The current knowledge on plasma mixing in stellar interiors is based on theoretical modeling, which calibrates the empirical relations between the mixing and observable stellar parameters. Hence, a model-independent method of studying the mixing process is a desirable, but yet unfounded approach. Here, using a new spectral-correlation method, verified for the Sun, we show that deep mixing is manifested in stellar photometric light curves. We measure the timescales of the stochastic change in the spectral power of rotational variability of hundreds of main-sequence stars from the Kepler mission archive. The discovered proportionality of these timescales to the turnover time of the standard mixing length theory, their consistency with Kolmogorov’s theory of turbulence, and the relation with stellar activity provide a new approach to the probing of stellar interiors. This opens a broad perspective for experimental studies of deep mixing and magnetic dynamos in stars.
机译:当前关于恒星内部等离子体混合的知识是基于理论模型的,该理论模型校准了混合和可观测恒星参数之间的经验关系。因此,研究混合过程的独立于模型的方法是一种理想的方法,但尚无根据。在这里,使用一种新的光谱相关方法(已针对太阳进行了验证),我们证明了深混合存在于恒星光度学光曲线中。我们从开普勒任务档案中测量了数百个主序恒星自转变异性谱功率随机变化的时间尺度。这些时间尺度与标准混合长度理论的周转时间成正比,与Kolmogorov湍流理论的一致性以及与恒星活动的关系提供了一种探索恒星内部的新方法。这为恒星深层混合和磁动力的实验研究打开了广阔的前景。

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