首页> 外文会议>SOHO 11 Symposium on From Solar Min to Max: Half a Solar Cycle with SOHO Mar 11-15, 2002 Davos, Switzerland >WHAT DYNAMIC CHANGES IN THE SUN DRIVE THE EVOLUTION OF OSCILLATION FREQUENCIES THROUGH THE ACTIVITY CYCLE?
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WHAT DYNAMIC CHANGES IN THE SUN DRIVE THE EVOLUTION OF OSCILLATION FREQUENCIES THROUGH THE ACTIVITY CYCLE?

机译:太阳在活动周期中的动态变化是什么导致振动频率的变化?

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The frequencies of solar oscillations (f- and p-modes) evolve through the solar cycle. The changes are driven by some combination of changes in the magnetic field, thermal structure and velocity field. It is unclear what is the precise combination of the three. One way or another, this thorny issue rests on an understanding of the response of the solar structure to increased magnetic field, but this is complicated. As well, we do not understand the origin of the sun's irradiance increase with increasing magnetic activity. Until recently, it seemed that an unphysically large magnetic field change was required to account for the frequency evolution during the cycle. However, the problem seems to have been solved (Dziembowski, Goode & Schou 2001). Specifically, a small-scale magnetic field was considered assuming uncorrelated field components - allowing the vertical component to be statistically different from the two horizontal ones. It turns out that a purely radial random field is the most economical, as well as being more physically sensible for other reasons. Furthermore, the solution might have a direct bearing on the origin of the irradiance variation. We discuss recent results and the present state of our knowledge.
机译:太阳振荡的频率(f模式和p模式)在整个太阳周期中都会发生变化。这些变化是由磁场,热结构和速度场变化的某种组合所驱动的。目前尚不清楚这三者的确切组合是什么。无论如何,这个棘手的问题取决于对太阳结构对增加磁场的响应的理解,但这很复杂。同样,我们不了解太阳辐照度随磁活动增加而增加的原因。直到最近,似乎还需要一个不大物理上的磁场变化来说明周期中的频率变化。但是,这个问题似乎已经解决了(Dziembowski,Goode&Schou 2001)。具体而言,考虑了一个小磁场,假设它们具有不相关的磁场分量-允许垂直分量在统计上不同于两个水平分量。事实证明,纯粹的径向随机场是最经济的,并且出于其他原因在物理上更敏感。此外,该解决方案可能直接关系到辐照度变化的起源。我们讨论最近的结果和我们的知识的现状。

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