Evolution and Impact of Switchbacks Throughout the Heliosphere
Alfred Mallet, Chen Shi, Anna Tenerani, Oleksiy Agapitov, Mojtaba Akhavan-Tafti, Samuel Badman, Nina Bizien, Trevor Bowen, Mihir I. Desai, J. F. Drake, Timothy Horbury, Andrea Larosa, Maria S. Madjarska, Francesco Malara, Lorenzo Matteini, Mathew Owens, Victor Réville, Nikos Sioulas, Shirsh Lata Soni, Jonathan Squire, Gabriel Ho Hin Suen, Marc Swisdak, Marco Velli, Jaye Verniero, Nicholas Watkins, Luca Sorriso-Valvo
physics.space-ph, astro-ph.SR, physics.plasm-ph
Submitted: 2026-07-02
Comments: 60 pages, 21 figures, submitted to Space Science Reviews
License: http://creativecommons.org/licenses/by/4.0/
The gist: Magnetic switchbacks are large-amplitude fluctuations in the interplanetary magnetic field, and appear frequently in the near-Sun solar wind explored recently by Parker Solar Probe: these new
Terminology
Abstract
Magnetic switchbacks are large-amplitude fluctuations in the interplanetary magnetic field, and appear frequently in the near-Sun solar wind explored recently by Parker Solar Probe: these new observations have prompted many new studies into their properties and origins. Here, we first review what is known about how switchbacks evolve as they travel away from the Sun: both in terms of their expansion-driven growth and their decay due to various processes like turbulence, reconnection, dispersion, parametric instability, and interaction with interplanetary shocks. We then review the current state of knowledge on how switchbacks impact the physics of the solar wind as a whole: in terms of the turbulent cascade, acceleration and heating of the wind, modification of the open solar flux and scattering of energetic particles. Finally, we suggest future studies to further our understanding of switchback evolution and impacts on the heliosphere.
Sources
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