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Magnetic Switchback Occurrence Rates in the Inner Heliosphere: Parker Solar Probe and 1 au

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arxiv 2202.04216 v1 pith:J5I36G3I submitted 2022-02-09 astro-ph.SR physics.plasm-phphysics.space-ph

classification astro-ph.SRphysics.plasm-phphysics.space-ph
keywords fieldmagneticdifferentoccurrenceswitchbackswitchbacksavailablebeen
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abstract

The subject of switchbacks, defined either as large angular deflections or polarity reversals of the magnetic field, has generated substantial interest in the space physics community since the launch of Parker Solar Probe (PSP) in 2018. Previous studies have characterized switchbacks in several different ways, and have been restricted to data available from the first few orbits. Here, we analyze the frequency of occurrence of switchbacks per unit distance for the first full eight orbits of PSP. In this work, are considered switchback only the events that reverse the sign of magnetic field relative to a regional average. A significant finding is that the rate of occurrence falls off sharply approaching the sun near 0.2 au (40 $R_\odot$), and rises gently from 0.2 au outward. The analysis is varied for different magnetic field cadences and for different local averages of the ambient field, confirming the robustness of the results. We discuss implications for the mechanisms of switchback generation. A publicly available database has been created with the identified reversals.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Solar Chromospheric Network as a Source for Solar Wind Switchbacks

    astro-ph.SR 2025-07 conditional novelty 6.0 of 10

    Chromospheric network spicules have spacings of 0.4-1.5 Mm, aspect ratios of 6-40, and counts of 40-100, which the authors argue can explain the medium scale of Parker Solar Probe switchbacks through random-walk redis...

  2. Evolution and Impact of Switchbacks Throughout the Heliosphere

    physics.space-ph 2026-07 accept novelty 3.0 of 10

    Switchbacks grow under expansion then erode by multiple processes, contributing free energy to solar-wind turbulence, heating, acceleration and particle transport.

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