论文标题
磁换回的优先取向,对太阳能磁通传输的影响
The preferential orientation of magnetic switchbacks, implications for solar magnetic flux transport
论文作者
论文摘要
我们研究了换回(SB)中磁场偏转的方向,以确定它们是否以可能的优先方向为特征。我们计算PSP任务1至9的磁场与Parker螺旋方向的偏转角。我们首先将这些挠度角度的分布描述为平静的太阳风间隔,并评估帕克模型的精度,这是距离太阳的距离的函数。然后,我们假设太阳风由两个种群组成,背景是平静的太阳风和SB的种群,其特征是波动较大。我们将在太阳风中观察到的偏转角的总分布建模为两个不同的正常分布的称重总和,每个分布对应于其中一个人群。我们使用MCMC算法将观察到的数据与我们的模型拟合,并检索两个高斯函数的最可能的平均矢量和协方差矩阵系数以及人口比例。我们首先观察到,黄道中螺旋方向的准确性是径向距离的函数,这种方式与PSP在太阳风加速度区域附近相一致。然后,我们发现合适的折返种群与平静的太阳风数量相比,其偏转具有系统的偏见。除E6以外的所有相遇以及磁场主要极性如何。这意味着在黄道平面中顺时针方向上SB的明显优先取向,我们讨论了该结果及其在现有换回形成理论的上下文中的含义。最后,我们报告了一个12小时的SB斑块的观察,该SB沿同一方向系统地偏转,因此贴片中的磁场矢量尖端会偏转并返回给定平面内的Parker螺旋。
We investigate the orientation of the magnetic field deflections in switchbacks (SB) to determine if they are characterised by a possible preferential orientation. We compute the deflection angles of the magnetic field relative to the Parker spiral direction for encounters 1 to 9 of the PSP mission. We first characterize the distribution of these deflection angles for calm solar wind intervals, and assess the precision of the Parker model as a function of distance to the Sun. We then assume that the solar wind is composed of two populations, the background calm solar wind and the population of SB, characterized by larger fluctuations. We model the total distribution of deflection angles we observe in the solar wind as a weighed sum of two distinct normal distributions, each corresponding to one of the populations. We fit the observed data with our model using a MCMC algorithm and retrieve the most probable mean vector and covariance matrix coefficients of the two Gaussian functions, as well as the population proportion. We first observe that the accuracy of the spiral direction in the ecliptic is a function of radial distance, in a manner that is consistent with PSP being near the solar wind acceleration region. We then find that the fitted switchback population presents a systematic bias in its deflections compared to the calm solar wind population. This result holds for all encounters but E6, and regardless of the magnetic field main polarity. This implies a marked preferential orientation of SB in the clockwise direction in the ecliptic plane, and we discuss this result and its implications in the context of the existing switchback formation theories. Finally, we report the observation of a 12-hour patch of SB that systematically deflect in the same direction, so that the magnetic field vector tip within the patch deflects and returns to the Parker spiral within a given plane.