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Differential rotation and meridional flow of Arcturus

机译:Arcturus的差速旋转和子午流

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The spectroscopic variability of Arcturus hints at cyclic activity cycle and differential rotation. This could provide a test of current theoretical models of solar and stellar dynamos. To examine the applicability of current models of the flux transport dynamo to Arcturus, we compute a mean-field model for its internal rotation, meridional flow, and convective heat transport in the convective envelope. We then compare the conditions for dynamo action with those on the Sun. We find solar-type surface rotation with about 1/10th of the shear found on the solar surface. The rotation rate increases monotonically with depth at all latitudes throughout the whole convection zone. In the lower part of the convection zone the horizontal shear vanishes and there is a strong radial gradient. The surface meridional flow has maximum speed of 170 m/s and is directed towards the equator at high and towards the poles at low latitudes. Turbulent magnetic diffusivity is of the order 1015–1016 cm2/s. The conditions on Arcturus are not favorable for a circulation-dominated dynamo (© 2011 WILEY-VCH Verlag GmbH & Co. KGaA, Weinheim)
机译:Arcturus的光谱变异性暗示了周期性活动周期和差异旋转。这可以提供对太阳和恒星动力的当前理论模型的检验。为了检查当前通量传递发电机模型对Arcturus的适用性,我们计算了其内部旋转,子午流和对流包络中对流热传递的均值模型。然后,我们将发电机作用的条件与太阳下的条件进行比较。我们发现太阳能类型的表面旋转大约是在太阳表面发现的剪切力的1/10。在整个对流区中,所有纬度处的旋转速度都随深度单调增加。在对流区的下部,水平剪切消失,并且径向梯度很大。表面子午流的最大速度为170 m / s,在高纬度时指向赤道,在低纬度时指向极。湍流磁扩散率约为10 15 –10 16 cm 2 / s。 Arcturus上的条件不利于以循环为主导的发电机(©2011 WILEY-VCH Verlag GmbH&Co. KGaA,Weinheim)

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