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首页> 外文期刊>Astronomische Nachrichten: A Journal on all Fields of Astronomy >Solar radius and luminosity variations induced by the internal dynamo magnetic fields
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Solar radius and luminosity variations induced by the internal dynamo magnetic fields

机译:内部发电机磁场引起的太阳半径和亮度变化

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Although the occurrence of solar irradiance variations induced by magnetic surface features (e.g., sunspots, faculae, magnetic network) is generally accepted, the existence of intrinsic luminosity changes due to the internal magnetic fields is still controversial. This additional contribution is expected to be accompanied by radius variations and occurs on timescales not limited to that of the 11-year cycle, and thus to be potentially significant for the climate of the Earth.We aim to constrain theoretically the radius and luminosity variations of the Sun that are due to the effect of the variable magnetic fields in its interior associated with the dynamo cycle. We have extended a one-dimensional stellar evolution code to include several effects of the magnetic fields on the interior structure, such as the contributions to the hydrostatic equilibrium equation and to the energy conservation equation, the impact on the density and the equation of state, and the inhibition of convective energy transport. We investigate different magnetic configurations, based on both observational constraints and on the output of state-of-the-art mean field dynamo models.We explore both step-like and simply periodic time dependences of the magnetic field peak strength. We find that magnetic models have decreased luminosity and increased radii with respect to their nonmagnetic counterparts. In other words, the luminosity and radius variations are in anti-phase and in phase, respectively, with the magnetic field strength. For peak magnetic field strengths of the order of tens of kilogauss, luminosity variations ranging between 10~(?6) and 10~(?3) (in modulus) and radius variations between 10~(?6) and 10~(?5) are obtained. Modest but significant radius variations (up to 10~(?5) in relative terms) are obtained for magnetic fields of realistic strength and geometry, providing a potentially observable signature of the intrinsic variations. Establishing their existence in addition to the acce
机译:虽然通常接受由磁性表面特征(例如,太阳黑子,FaculaE,磁网络)引起的太阳辐照度变化的发生,但由于内部磁场引起的内在发光度变化的存在仍然存在争议。这一额外贡献预计将伴随着半径变化,并且在时间尺度不限于11年周期,因此对于地球气候可能是潜在的重要意义。我们的目标是理论上限制半径和亮度变化太阳是由于可变磁场在其内部与发电机循环相关联的效果。我们已经扩展了一维恒星演化代码,以包括磁场对内部结构上的若干效果,例如对静液压平衡方程和节能方程的贡献,对密度的影响和状态方程,并抑制对流能量输送。我们根据观察限制和最先进的平均场动力学模型的输出调查不同的磁性配置。我们探讨磁场峰强度的阶梯状且简单的周期性时间依赖性。我们发现磁性模型具有降低的亮度和相对于其非磁性对应物的半径增加。换句话说,亮度和半径变化分别具有磁场强度的抗相位和相位。对于数十公斤峰值的峰值磁场强度,亮度变化在10〜(?6)和10〜(?3)(模量)之间,10〜(?6)和10〜(?5的半径变化)是获得的。对于现实强度和几何形状的磁场,获得了适度但相对术语中最多10〜(?5)的半径变化,提供了潜在可观察到的内在变化的签名。除了ACCE之外,建立他们的存在

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