论文标题

与大振幅alfvénic振荡的本地场几何形状有关的磁场折返的特征:\ emph {wind}和\ emph {psp}观测值

Features of magnetic field switchbacks in relation to the local-field geometry of large-amplitude Alfvénic oscillations: \emph{Wind} and \emph{PSP} observations

论文作者

Bourouaine, S., Perez, J. C., Raouafi, N. E., Chandran, B. D., Bale, S. D., Velli, M.

论文摘要

在这封信中,我们报告了使用\ emph {wind}航天器的数据在1 AU附近的磁换回(SB)的观察结果。这些功能似乎与Parker太阳能探测任务(PSP)所观察到的功能非常相似:即,在太阳能散装速度$ V $中,与Radial-Field components $ b_r $ b_r $相关的太阳能体积速度$ V $中的单侧尖峰(或增强)。在我们分析的太阳能流中,这些特定的SB特征在1 AU附近与大振幅抗体振荡相关,这些振动振荡沿当地背景(普遍)磁场$ \ bf {b} _0 $几乎是径向的。我们还表明,当$ \ bf {b} _0 $几乎垂直于径向方向时,大的振幅alfvénic振荡显示出$ v $的变化,这是双面的变化(即$ v $交替增加,并根据vector $Δ\Δ\ bf {bf {bf {bf {bf} = \ bf { \ bf {b} _0 $)。结果,SBS可能不会总是以$ V $为单方面的尖峰,尤其是在较大的地中心距离上,当地背景字段统计地偏离了径向方向。我们建议,如果相对于确定的局部背景字段计算现场旋转,则可以通过大振幅alfvénic波动很好地描述SB,在某些情况下可能会偏离大型Parker场。

In this letter we report observations of magnetic switchback (SB) features near 1 au using data from the \emph{Wind} spacecraft. These features appear to be strikingly similar to the ones observed by the Parker Solar Probe mission (PSP) closer to the Sun: namely, one-sided spikes (or enhancements) in the solar-wind bulk speed $V$ that correlate/anti-correlate with the spikes seen in the radial-field component $B_R$. In the solar-wind streams that we analyzed, these specific SB features near 1 au are associated with large-amplitude Alfvénic oscillations that propagate outward from the sun along a local background (prevalent) magnetic field $\bf{B}_0$ that is nearly radial. We also show that, when $\bf{B}_0$ is nearly perpendicular to the radial direction, the large amplitude Alfvénic oscillations display variations in $V$ that are two-sided (i.e., $V$ alternately increases and decreases depending on the vector $Δ\bf{B}=\bf{B} - \bf{B}_0$). As a consequence, SBs may not appear always as one-sided spikes in $V$, especially at larger heliocentric distances where the local background field statistically departs from the radial direction. We suggest that SBs can be well described by large-amplitude Alfvénic fluctuations if the field rotation is computed with respect to a well-determined local background field that, in some cases, may deviate from the large-scale Parker field.

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