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Phase Space Analysis: The Equilibrium of the Solar Magnetic Cycle

机译:相空间分析:太阳磁循环的平衡

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摘要

We present the results of a statistical study of the solar cycle based on the analysis of the superficial toroidal magnetic field component phase space. The magnetic field component used to create the embedded phase space was constructed from monthly sunspot number observations since 1750. The phase space was split into 32 sections (or time instants) and the average values of the orbits on this phase space were calculated (giving the most probable cycle). In this phase space it is shown that the magnetic field on the Sun’s surface evolves through a set of orbits that go around a mean orbit (i.e., the most probable magnetic cycle that we interpret as the equilibrium solution). It follows that the most probable cycle is well represented by a van der Pol oscillator limit curve (equilibrium solution), as can be derived from mean-field dynamo theory. This analysis also retrieves the empirical Gnevyshev – Ohl’s rule between the first and second parts of the solar magnetic cycle. The sunspot number evolution corresponding to the most probable cycle (in phase space) is presented.
机译:我们根据对表面环形磁场分量相空间的分析,提出了对太阳周期的统计研究结果。自1750年以来,根据每月太阳黑子数观测结果构建了用于创建嵌入相空间的磁场分量。将相空间分为32个部分(或时间点),并计算了该相空间上的轨道平均值(给出了最可能的周期)。在这个相空间中,可以看出,太阳表面的磁场是通过围绕平均轨道(即我们认为是最平衡的磁循环)的一组轨道演化的。因此,最可能的周期由范德波尔振荡器极限曲线(平衡解)很好地表示,可以从平均场发电机理论中得出。该分析还检索了经验Gnevyshev – Ohl在太阳磁循环的第一部分和第二部分之间的规则。太阳黑子数演化对应于最可能的周期(在相空间中)。

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