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首页> 外文期刊>The Astrophysical journal >GENERALIZED INVESTIGATION OF THE ROTATION-ACTIVITY RELATION: FAVORING ROTATION PERIOD INSTEAD OF ROSSBY NUMBER
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GENERALIZED INVESTIGATION OF THE ROTATION-ACTIVITY RELATION: FAVORING ROTATION PERIOD INSTEAD OF ROSSBY NUMBER

机译:旋转-活动关系的广义调查:以旋转周期代替ROSSBY数

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Magnetic activity in Sun-like and low-mass stars causes X-ray coronal emission which is stronger for more rapidly rotating stars. This relation is often interpreted in terms of the Rossby number, i.e., the ratio of rotation period to convective overturn time. We reconsider this interpretation on the basis of the observed X-ray emission and rotation periods of 821 stars with masses below 1.4 M ☉. A generalized analysis of the relation between X-ray luminosity normalized by bolometric luminosity, L X/L bol, and combinations of rotational period, P, and stellar radius, R, shows that the Rossby formulation does not provide the solution with minimal scatter. Instead, we find that the relation L X/L bol∝P –2 R –4 optimally describes the non-saturated fraction of the stars. This relation is equivalent to L X∝P –2, indicating that the rotation period alone determines the total X-ray emission. Since L X is directly related to the magnetic flux at the stellar surface, this means that the surface flux is determined solely by the star's rotation and is independent of other stellar parameters. While a formulation in terms of a Rossby number would be consistent with these results if the convective overturn time scales exactly as , our generalized approach emphasizes the need to test a broader range of mechanisms for dynamo action in cool stars.
机译:像太阳和低质量恒星中的磁活动会导致X射线日冕发射,这对于更快速旋转的恒星来说更强。通常用罗斯比数来解释这种关系,即旋转周期与对流翻转时间之比。我们根据观察到的质量小于1.4 M stars的821颗恒星的X射线发射和自转周期重新考虑这种解释。对通过辐射热度L X / L bol归一化的X射线光度与旋转周期P和恒星半径R的组合之间的关系进行的一般分析表明,Rossby公式不能为散射提供最小的解决方案。相反,我们发现关系L X / L bol∝P –2 R –4最佳地描述了恒星的非饱和部分。该关系等效于L X∝P –2,表明旋转周期本身决定了总的X射线发射。由于L X与恒星表面的磁通量直接相关,因此这意味着表面磁通量仅由恒星的旋转确定,并且与其他恒星参数无关。如果对流翻转时间精确地按比例缩放,用罗斯比数表示将与这些结果一致,我们的广义方法则强调需要测试更广泛范围的凉星发电机作用机理。

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