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THE SOURCES OF MAGNETIC FIELD TWIST IN SOLAR ACTIVE REGIONS

机译:太阳活动区的磁场扭曲源

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Observations have revealed that a hemispheric preference of magnetic chirality (handedness) exists throughout the solar atmosphere. For example, the current helicity of active regions is predominantly negative (left-handed twist) in the northern hemisphere and positive (right-handed twist) in the southern. The explanation of this hemispheric tendency is still open to question. In this paper we first review several possible mechanisms and clarify some misunderstandings. In our views, in the photosphere, the differential rotation acting on already emerged sunspot magnetic fields will lead to negative current helicity in the northern hemisphere and positive in the southern, but the same effect caused by the Coriolis force is opposite in sign. In the turbulent convection zone, the Coriolis force acting on the rising magnetic flux tubes will result in negative/ positive helicity in the northern/southern hemisphere, but the corresponding action by the differential rotation will give rise to a reversed result. Moreover, in this region the α-effect will produce the wrong sign to explain the observed sense of magnetic twist. It should be noteworthy that the two current helicities generated by the α-effect, that in the mean field and that in the fluctuations, have opposite signs, and the former is positiveegative in the northern/southern hemisphere while the latter is negative/positive in the northern/ southern hemisphere. In the overshoot region at the base of the convection zone, the current helicity created by the α-effect has the sign needed. Finally, we suggest that some surface flows (e.g., converging flows that can lead to cancellation of opposite-polarity flux in the photosphere) and magnetic reconnection are also important to the redistribution (or regeneration) of magnetic twist in active regions.
机译:观测表明,整个太阳大气中都存在半球形的磁性手性(惯性)偏好。例如,当前活动区域的螺旋线在北半球主要为负(左旋),在南部为正(右旋)。关于这种半球趋势的解释仍然值得商question。在本文中,我们首先回顾了几种可能的机制,并阐明了一些误解。我们认为,在光层中,作用在已经出现的黑子磁场上的旋转差将导致北半球的负电流螺旋和南半球的正螺旋,但科里奥利力引起的相同效应在符号上相反。在湍流对流区,作用在上升的磁通管上的科里奥利力将导致北/南半球的负/正螺旋度,但差动旋转的相应作用将产生相反的结果。此外,在该区域中,α效应将产生错误的符号,以解释观察到的磁扭曲感。值得注意的是,由α效应产生的两个当前螺旋,在平均场和在波动中,具有相反的符号,前者在北/南半球为正/负,而后者为负/在北/南半球为正。在对流区底部的超调区域中,由α效应产生的电流螺旋具有所需的符号。最后,我们建议某些表面流(例如会导致在光球中抵消相反极性通量的会聚流)和磁重连对于有源区中磁扭的重新分布(或再生)也很重要。

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