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On the Contribution of Quiet-Sun Magnetism to Solar Irradiance Variations: Constraints on Quiet-Sun Variability and Grand-minimum Scenarios

机译:安静阳光磁化对太阳辐照区的贡献:安静阳光变异性和宏伟的最小情景的限制

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While the quiet-Sun magnetic field shows only little variation with the solar cycle, long-term variations cannot be completely ruled out from first principles. We investigate the potential effect of quiet-Sun magnetism on spectral solar irradiance through a series of small-scale dynamo simulations with zero vertical flux imbalance ( ) and varying levels of small-scale magnetic field strength, and one weak network case with an additional flux imbalance corresponding to a flux density of G. From these setups, we compute the dependence of the outgoing radiative energy flux on the mean vertical magnetic field strength in the photosphere at a continuum optical depth τ ?=?1 ( ). We find that a quiet-Sun setup with a mean vertical field strength of G is about 0.6% brighter than a non-magnetic reference case. We find a linear dependence of the outgoing radiative energy flux on the mean field strength with a relative slope of 1.4?×?10~(?4) G~(?1). With this sensitivity, only a moderate change of the quiet-Sun field strength by 10% would lead to a total solar irradiance variation comparable to the observed solar cycle variation. While this does provide strong indirect constraints on possible quiet-Sun variations during a regular solar cycle, it also emphasizes that potential variability over longer timescales could make a significant contribution to longer-term solar irradiance variations.
机译:虽然安静的太阳磁场仅显示太阳循环的几乎变化,但不能从第一个原则中完全排除长期变化。我们通过一系列小型发电机模拟,调查安静 - 太阳磁力对光谱太阳辐照度的潜在影响,通过零垂直磁通不平衡()和不同水平的小规模磁场强度,以及一个较小的网络箱,额外的通量对应于G的通量密度的不平衡。从这些设置中,我们计算输出辐射能量通量对Photosphere的平均垂直磁场强度的依赖性,在连续光学深度τα=α=α1()。我们发现一个平均垂直场强的静阳设置比非磁性参考盒更明亮。我们发现传出的辐射能量通量对平均场强的线性依赖性,相对斜率为1.4?×10〜(?4)G〜(?1)。通过这种敏感性,只有10%的安静阳光场强度的温和变化将导致与观察到的太阳循环变化相当的总太阳辐照度变化。虽然这确实在常规太阳循环期间提供了对可能的安静阳光变化的强烈间接限制,但它还强调对时间较长的时间变异,这可能对长期太阳辐照度变化产生了重大贡献。

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