Direct Measurement of Polar Coronal Hole-like Solar Wind in its Acceleration Phase
astro-ph.SR, physics.space-ph
Submitted: 2026-08-31
Updated: 2026-08-31
Comments: 21 pages, 4 figures, Under Review in ApJL, Comments Welcome
License: http://creativecommons.org/licenses/by/4.0/
The gist: The early evolution of fast polar coronal hole (PCH) solar wind remains largely unconstrained by in situ measurements.
Terminology
Abstract
The early evolution of fast polar coronal hole (PCH) solar wind remains largely unconstrained by in situ measurements. In March 2025, Parker Solar Probe (Parker) at its closest approach of 9.86 Solar Radii (R) measured outflow from a large equatorial coronal hole (ECH) which was also measured at 1,au and at intermediate distances by Solar Orbiter (also near its perihelion). At 1,au the stream properties are consistent with PCH properties established by Ulysses. The stream was measured by Parker substantially below the Alfvén surface, with proton temperatures in excess of 2,MK and a speed at about 10, R which was only about 60% of its asymptotic value. The Solar Orbiter data indicates that the acceleration is largely complete by 60 R. Spherically-polarized fluctuations in the stream are observed to develop from near-transverse and small-angle at Parker to full reversal ``switchbacks'' at Solar Orbiter. Comparison of the implied acceleration profile to historical doppler-dimming measurements suggests that the stream's low coronal acceleration is similar to that of PCH flows. Consistent with previous work, this acceleration requires significantly more energy than can be provided by the observed thermal pressure gradients, with a significant contribution likely from the abundant Alfvénic fluctuation energy observed at Parker. These observations provide unique constraints on models of the radial evolution of the fastest solar wind, and indicate that these wind streams experience gradual, steady acceleration over their first few tens of solar radii of evolution.
Sources
- Spherically Polarized Alfv'en Waves and the Gosling Boost
- Active nests at solar maximum: How nested flux emergence dominated flaring activity and structured the heliosphere
- MHD simulations on the large-scale propagation of high-speed solar wind streams
- On the Relation between Source Region and In-situ Variability of Low $\delta B$ Solar Wind Streams
- An assessment of observational coverage and gaps for robust Sun to heliosphere integrated science
- Generation and Expansion-Driven Growth of Switchbacks in the Outer Solar Corona and Solar Wind
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