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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Physical causes of solar cycle amplitude variability
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Physical causes of solar cycle amplitude variability

机译:太阳活动周期振幅的物理原因可变性

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摘要

The level of solar activity varies from cycle to cycle. This variability is probably caused by a combination of nonlinear and random effects. Based on surface flux transport simulations, we show that the observed inflows into active regions and toward the activity belts provide an important nonlinearity in the framework of Babcock-Leighton model for the solar dynamo. Inclusion of these inflows also leads to a reproduction of the observed proportionality between the open heliospheric flux during activity minima and the maximum sunspot number of the following cycle. A substantial component of the random variability of the cycle strength is associated with the cross-equatorial flux plumes that occur when large, highly tilted sunspot groups emerge close to the equator.We show that the flux transported by these events is important for the amplitude of the polar fields and open flux during activity minima. The combined action of inflows and cross-equatorial flux plumes provides an explanation for the weakness of the polar fields at the end of solar cycle 23 (and hence for the relative weakness of solar cycle 24).
机译:太阳活动周期不同的水平周期。非线性和随机效应的组合。基于表面通量传输模拟,我们表明,观察流入活跃地区和皮带提供了一个向活动重要的非线性的框架太阳能发电机Babcock-Leighton模型。这些资金流入也会导致繁殖的比例开放期间日球通量之间的关系活动最小值和最大的太阳黑子的数量下面的循环。循环强度的随机变化与cross-equatorial通量羽流当发生大、高度倾斜的太阳黑子组出现接近赤道。通量经由这些事件是很重要的振幅的极地字段和开放在活动过程中通量最小值。的流入和cross-equatorial通量羽流提供了一个解释的弱点极地字段的末尾23(和太阳活动周期因此对太阳活动周期的相对较弱24).

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