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A Combined Analysis of the Observational Aspects of the Quasi-biennial Oscillation in Solar Magnetic Activity

机译:太阳磁活动中准两年一次振荡观测方面的综合分析

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摘要

Solar quasi-biennial oscillations (QBOs) with the time scale of 0.6-4 yrs appear to be a basic feature of the Sun's activity. Observational aspects of QBOs are reviewed on the basis of recent publications. Solar QBOs are shown to be ubiquitous and very variable. We demonstrate that many features of QBOs are common to different observations. These features include variable periodicity and intermittence with signs of stochastisity, a presence at all levels of the solar atmosphere and even in the convective zone, independent development in the northern and southern solar hemispheres, most pronounced amplitudes during the maximum phase of the 11-yr cycle and the transition of QBOs into interplanetary space. Temporal weakening of solar activity around the maximum of the 11-yr cycle (Gnevyshev Gap) can be considered an integral part of QBOs. The exact mechanism by which the solar QBO is produced is poorly understood. We describe some of the most plausible theoretical mechanisms and discuss observational features that support/contradict the theory. QBOs have an important meaning as a benchmark of solar activity, not only for investigation of the solar dynamo but also in terms of space weather.
机译:时间尺度为0.6-4年的太阳准双年度振荡(QBO)似乎是太阳活动的基本特征。 QBO的观察方面会根据最新出版物进行审查。太阳能QBO被证明是无处不在且变化很大的。我们证明了QBO的许多功能对于不同的观察是共有的。这些特征包括周期性变化和具有随机性迹象的间歇性,在太阳大气的各个水平甚至对流区内的存在,在北半球和南半球的太阳半球的独立发展,在11年最大阶段最明显的振幅周期和QBO向星际空间的过渡。在11年周期的最大值附近(Gnevyshev Gap),太阳活动的时间减弱可以认为是QBO的组成部分。产生太阳能QBO的确切机理知之甚少。我们描述了一些最合理的理论机制,并讨论了支持/矛盾该理论的观测特征。 QBO作为太阳活动基准的重要意义,不仅对于太阳发电机的研究,而且在空间天气方面。

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