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The Puzzling Dynamos of Stars: Recent Progress With Global Numerical Simulations

机译:星星的令人费解的发电机:最近的全局数值模拟进展

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The origin of magnetic cycles in the Sun and other cool stars is one of the great theoretical challenge in stellar astrophysics that still resists our understanding. Ab-initio numerical simulations are today required to explore the extreme turbulent regime in which stars operate and sustain their large-scale, cyclic magnetic field. We report in this work on recent progresses made with high performance numerical simulations of global turbulent convective envelopes. We rapidly review previous prominent results from numerical simulations, and present for the first time a series of turbulent, global simulations producing regular magnetic cycles whose period varies systematically with the convective envelope parameters (rotation rate, convective luminosity). We find that the fundamentally non-linear character of the dynamo simulated in this work leads the magnetic cycle period to be inversely proportional to the Rossby number. These results promote an original interpretation of stellar magnetic cycles, and could help reconcile the cyclic behaviour of the Sun and other solar-type stars.
机译:阳光和其他凉爽的星星的磁性周期的起源是恒星天体物理学的理论挑战之一,仍然抵抗我们的理解。 AB-Initio数值模拟需要探索恒星运营和维持其大规模循环磁场的极端湍流制度。我们在这项工作中报告了最近通过全球湍流对流信封的高性能数值模拟所取得的进展。我们迅速审查了来自数值模拟的先前突出的结果,并且首次出现了一系列湍流,全局模拟,产生常规磁循环,其时期随着对流包络参数(转速,对流光度)系统地变化。我们发现,在该工作中模拟的发电机的基本上非线性特征导致磁循环周期与罗斯比数成反比。这些结果促进了恒星磁循环的原始解释,可以帮助调节太阳和其他太阳能型恒星的循环行为。

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