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ROTATION OF SOLAR MAGNETIC FIELDS FOR THE CURRENT SOLAR CYCLE 24

机译:当前太阳周期24的太阳磁场旋转

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The rotation of solar magnetic fields for the current solar cycle?24 is investigated through a cross-correlation analysis of the Carrington synoptic maps of solar photospheric magnetic fields during Carrington rotation numbers 2076-2146 (2008 October to 2014 January). The sidereal rotation rates of positive and negative magnetic fields at some latitudes are shown, and it can be found that the positive (negative) fields generally rotate faster than the negative (positive) fields in the southern (northern) hemisphere at low latitudes. The mean rotation profiles of total, positive, and negative magnetic fields between ±60° latitudes in the time interval are also obtained. It should be noted that both of the mean rotation profiles of the positive and negative magnetic fields, as well as the mean rotation profile of the total magnetic field, exhibit a quasi-rigid rotation at latitudes above about 55°. The mean rotation rates of the positive (negative) polarity reach their maximum values at about 9°(6)° latitude in the southern (northern) hemisphere. The mean rotation profile of the total magnetic field displays an obvious north-south asymmetry, where the rotation seems to be more differential in the northern hemisphere. The latitude variation in the rotation rate differences between positive and negative magnetic fields is further studied, and it is found that magnetic fields with the same polarity as the leading sunspots at a given hemisphere rotate faster than those with the opposite polarity, except for the zones around 52° latitude of the southern hemisphere and around 35° latitude of the northern hemisphere. The implication of these results is discussed. It is clear that the obtained results can provide some observational constraints on the theoretical research of the mechanisms of differential rotation and solar cycle.
机译:通过对卡林顿旋转数2076-2146(2008年10月至2014年1月)期间太阳光球磁场的卡林顿天气示意图进行互相关分析,研究了当前太阳周期24的太阳磁场旋转。显示了在某些纬度下正磁场和负磁场的恒星旋转速度,可以发现,在低纬度下,正(负)磁场的旋转速度通常比南(北)半球的负(正)磁场快。还获得了时间间隔内±60°纬度之间的总磁场,正磁场和负磁场的平均旋转曲线。应该注意的是,正磁场和负磁场的平均旋转曲线以及总磁场的平均旋转曲线在高于约55°的纬度上都表现出准刚性旋转。正极(负极)的平均旋转速率在南半球(北半球)约9°(6)°的纬度处达到最大值。总磁场的平均旋转曲线显示出明显的南北不对称性,其中北半球的旋转似乎差异更大。进一步研究了正负磁场之间的旋转速度差异的纬度变化,发现在给定半球中与先行黑子具有相同极性的磁场比具有相反极性的磁场的旋转速度快,但区域不同南半球约52度,北半球约35度。讨论了这些结果的含义。显然,所获得的结果可以为差速旋转和太阳周期机理的理论研究提供一些观察上的约束。

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