The Structure and Origin of Switchbacks: Parker Solar Probe Observations
Abstract
Switchbacks are rapid magnetic field reversals that last from seconds to hours. Current Parker Solar Probe (PSP) observations pose many open questions in regard to the nature of switchbacks. For example, are they stable as they propagate through the inner heliosphere, and how are they formed? In this work, we aim to investigate the structure and origin of switchbacks. In order to study the stability of switchbacks, we suppose the small-scale current sheets therein are generated by magnetic braiding, and they should work to stabilize the switchbacks. With more than one thousand switchbacks identified with PSP observations in seven encounters, we find many more current sheets inside than outside switchbacks, indicating that these microstructures should work to stabilize the S-shaped structures of switchbacks. Additionally, we study the helium variations to trace the switchbacks to their origins. We find both helium-rich and helium-poor populations in switchbacks, implying that the switchbacks could originate from both closed and open magnetic field regions in the Sun. Moreover, we observe that the alpha-proton differential speeds also show complex variations as compared to the local Alfv\'en speed. The joint distributions of both parameters show that low helium abundance together with low differential speed is the dominant state in switchbacks. The presence of small-scale current sheets in switchbacks along with the helium features are in line with the hypothesis that switchbacks could originate from the Sun via interchange reconnection process. However, other formation mechanisms are not excluded.
Cite
@article{arxiv.2301.10374,
title = {The Structure and Origin of Switchbacks: Parker Solar Probe Observations},
author = {Jia Huang and J. C. Kasper and L. A. Fisk and Davin E. Larson and Michael D. McManus and C. H. K. Chen and Mihailo M. Martinović and K. G. Klein and Luke Thomas and Mingzhe Liu and Bennett A. Maruca and Lingling Zhao and Yu Chen and Qiang Hu and Lan K. Jian and J. L. Verniero and Marco Velli and Roberto Livi and P. Whittlesey and Ali Rahmati and Orlando Romeo and Tatiana Niembro and Kristoff Paulson and M. Stevens and A. W. Case and Marc Pulupa and Stuart D. Bale and J. S. Halekas},
journal= {arXiv preprint arXiv:2301.10374},
year = {2023}
}
Comments
accepted by ApJ