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Characterizing the feedback of magnetic field on the differential rotation of solar-like stars

机译:表征太阳类恒星微分旋转时磁场的反馈

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The aim of this article is to study how the differential rotation of solar-like stars is influenced by rotation rate and mass in presence of magnetic fields generated by a convective dynamo. We use the ASH code to model the convective dynamo of solar-like stars at various rotation rates and masses, hence different effective Rossby numbers. We obtained models with either prograde (solar-like) or retrograde (anti-solar-like) differential rotation. The trends of differential rotation versus stellar rotation rate obtained for simulations including the effect of the magnetic field are weaker compared with hydro simulations (ΔΩ∝(Ω/Ω_⊙)~(0.44) in the MHD case and ΔΩ∝(Ω/Ω_⊙)~(0.89) in the hydro case), hence showing a better agreement with the observations. Analysis of angular momentum transport revealed that the simulations with retrograde and prograde differential rotation have opposite distribution of the viscous, turbulent Reynolds stresses and meridional circulation contributions. The thermal wind balance is achieved in the prograde cases. However, in retrograde cases Reynolds stresses are dominant for high latitudes and near the top of the convective layer. Baroclinic effects are stronger for faster rotating models.
机译:本文的目的是研究在对流发电机产生磁场的情况下,太阳样恒星的差速旋转是如何受到旋转速度和质量的影响的。我们使用ASH代码对各种自转速率和质量的太阳状恒星的对流发电机建模,从而得出不同的有效Rossby数。我们获得了具有正向(类似于太阳)或逆向(类似于太阳)差分旋转的模型。与水力模拟(MHD情况下的ΔΩ∝(Ω/Ω_⊙)〜(0.44)和ΔΩ∝(Ω/Ω_⊙)相比,包括磁场影响在内的模拟所获得的差速旋转相对于恒星旋转的趋势更弱。 )〜(0.89)(在水电情况下),因此与观测值显示出更好的一致性。对角动量输运的分析表明,具有逆行和正行差速旋转的模拟具有相反的粘性,雷诺湍流应力和子午环流贡献的分布。在升级情况下,达到了热风平衡。但是,在逆行情况下,雷诺应力在高纬度和对流层顶部附近占主导地位。对于旋转速度更快的模型,斜压效应更强。

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