论文标题

关于膨胀太阳风中Alfvénic折返的特性:三维数值模拟

On the properties of Alfvénic switchbacks in the expanding solar wind: three-dimensional numerical simulations

论文作者

Johnston, Zade, Squire, Jonathan, Mallet, Alfred, Meyrand, Romain

论文摘要

折返 - 太阳风中磁场的突然逆转 - 帕克太阳能探针(PSP)无处不在。它们的起源,无论是从太阳能表面附近的过程还是太阳风本身内的过程中一直处于争议中,并且可能对太阳风加热和加速有关键影响。在这里,使用三维扩展的框模拟,我们研究了由详细扩展的太阳风中向外传播的alfvén波的演变而产生的折返的特性。我们的目标是提供可测试的预测,这些预测可用于区分太阳表面过程引起的属性以及从PSP进行折返观测中Alfvén波的原位演变的属性。我们展示了帕克螺旋的包含如何导致换回内部的磁场偏转变得不对称,优先偏转在Parker螺旋的平面上,并沿一个方向向平均场的径向分量旋转。由于其高度偏斜的性质,磁场分布峰的方向与平均场方向不同。还探索了折返的可压缩特性,根据$β$的值,磁场强度和密度波动是相关或反相关的,与理论的预测一致。我们还测量了这些合成折返边界处的磁场强度和密度尖峰的辍学,PSP都观察到了这两种折返。这些属性与观察的一致性为折返的Alfvén波模型提供了进一步的支持。

Switchbacks -- abrupt reversals of the magnetic field within the solar wind -- have been ubiquitously observed by Parker Solar Probe (PSP). Their origin, whether from processes near the solar surface or within the solar wind itself, remains under debate, and likely has key implications for solar wind heating and acceleration. Here, using three-dimensional expanding box simulations, we examine the properties of switchbacks arising from the evolution of outwards-propagating Alfvén waves in the expanding solar wind in detail. Our goal is to provide testable predictions that can be used to differentiate between properties arising from solar surface processes and those from the in-situ evolution of Alfvén waves in switchback observations by PSP. We show how the inclusion of the Parker spiral causes magnetic field deflections within switchbacks to become asymmetric, preferentially deflecting in the plane of the Parker spiral and rotating in one direction towards the radial component of the mean field. The direction of the peak of the magnetic field distribution is also shown to be different from the mean field direction due to its highly skewed nature. Compressible properties of switchbacks are also explored, with magnetic-field-strength and density fluctuations being either correlated or anticorrelated depending on the value of $β$, agreeing with predictions from theory. We also measure dropouts in magnetic-field strength and density spikes at the boundaries of these synthetic switchbacks, both of which have been observed by PSP. The agreement of these properties with observations provide further support for the Alfvén wave model of switchbacks.

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