论文标题

太阳能磁场基线和太阳辐照度的振荡

Oscillations of the baseline of solar magnetic field and solar irradiance on a millennial timescale

论文作者

Zharkova, V. V., Shepherd, S. J., Popova, E.

论文摘要

最近发现的与在太阳的内部和外层产生的双动力波相关的太阳背景磁场的长期振荡表明,太阳能活动在未来三十年(2019-2055)中趋向于类似于Maunder One的现代最小值。另一方面,太阳能总辐照度的重建表明,由于最低限度,周期平均的总太阳辐照度(TSI)的价值约为$ 1-1.5 $ $ $ WM^{ - 2} $,与基线(平均)地板温度的升高密切相关。为了理解这两个相反的趋势,我们计算了磁场变化的双动力汇总曲线向后十十万年,使我们能够确认正常(11年)中太阳能活动的强振荡,并最近报道了由双层太阳能发电机的作用引起的Grand(350-400年)太阳能周期。此外,通过施加跑步平均过滤器来抑制11年周期的大规模振荡,可以发现磁场基线(零线)的振荡(零线)。发现最小的基线振荡与大太阳能最小值(最低最低)一致发生在当前的超级循环开始之前。从那时起,基线幅度逐渐逐渐增加,其最高额为$〜$ 2700,其次是减少,最低限额为$〜$ 3700。发现基线太阳能磁场的这些振荡与有关太阳系的重中心的长期太阳惯性运动有关,该运动可以使陆地温度更加自然地提高2.5-3.0 $^\ circ $ c。

Recently discovered long-term oscillations of the solar background magnetic field associated with double dynamo waves generated in inner and outer layers of the Sun indicate that the solar activity is heading in the next three decades (2019-2055) to a Modern grand minimum similar to Maunder one. On the other hand, a reconstruction of solar total irradiance suggests that since the Maunder minimum there is an increase in the cycle-averaged total solar irradiance (TSI) by a value of about $1-1.5$ $Wm^{-2}$ closely correlated with an increase of the baseline (average) terrestrial temperature. In order to understand these two opposite trends, we calculated the double dynamo summary curve of magnetic field variations backward one hundred thousand years allowing us to confirm strong oscillations of solar activity in regular (11 year) and recently reported grand (350-400 year) solar cycles caused by actions of the double solar dynamo. In addition, oscillations of the baseline (zero-line) of magnetic field with a period of $1950\pm95$ years (a super-grand cycle) are discovered by applying a running averaging filter to suppress large-scale oscillations of 11 year cycles. Latest minimum of the baseline oscillations is found to coincide with the grand solar minimum (the Maunder minimum) occurred before the current super-grand cycle start. Since then the baseline magnitude became slowly increasing towards its maximum at $~$2700 to be followed by its decrease and minimum at $~$3700. These oscillations of the baseline solar magnetic field are found associated with a long-term solar inertial motion about the barycenter of the solar system that can lead to a further natural increase of the terrestrial temperature by 2.5-3.0$^\circ$C.

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