On the Radial Evolution of the Solar Wind : The Source Alignment Method Applied to Parker Solar Probe and Solar Orbiter Observations

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Main Authors: Dakeyo, Jean-Baptiste, Ervin, Tamar, Bale, Stuart, Démoulin, Pascal, Sioulas, Nikos, Réville, Victor, Liu, Mingzhe, Rouillard, Alexis, Maksimovic, Milan, Larson, Davin, Romeo, Orlando, Louarn, Philippe, Livi, Roberto
Format: Preprint
Published: 2026
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author Dakeyo, Jean-Baptiste
Ervin, Tamar
Bale, Stuart
Démoulin, Pascal
Sioulas, Nikos
Réville, Victor
Liu, Mingzhe
Rouillard, Alexis
Maksimovic, Milan
Larson, Davin
Romeo, Orlando
Louarn, Philippe
Livi, Roberto
author_facet Dakeyo, Jean-Baptiste
Ervin, Tamar
Bale, Stuart
Démoulin, Pascal
Sioulas, Nikos
Réville, Victor
Liu, Mingzhe
Rouillard, Alexis
Maksimovic, Milan
Larson, Davin
Romeo, Orlando
Louarn, Philippe
Livi, Roberto
contents The properties of the solar wind, as measured in situ throughout the heliosphere, depend both on the characteristics of its coronal source and on the intrinsic processes governing its interplanetary evolution. Recently, radial and Parker spiral alignment techniques have been applied to Parker Solar Probe (PSP) and Solar Orbiter (SO) observations to investigate the radial evolution of the same solar wind parcel. These studies have shown that the solar wind can undergo significant acceleration even beyond its primary acceleration region (i.e., above 15 solar radii). However, such radial and Parker spiral alignments are rare in practice, which limits the statistical significance and general applicability of the results. We introduce a new source alignment technique designed to overcome these limitations. Using magnetic backmapping, we associate similar solar wind streams observed by the two spacecraft based on the proximity of their photospheric footpoints, combined with additional in-situ stream similarity criteria. Applying the source alignment method to PSP and SO observations, we identify a total of 548 alignment intervals, each lasting 30 minutes. By constructing statistics over all alignments, we find that the solar wind speed increases by an average of 45% per radial decade (approximately 147 km/s) between the two probes. This result demonstrates that solar wind acceleration in the inner heliosphere remains significant compared to that occurring below 15 solar radii. Among the different studied plasma parameters, the radial evolution of the electron temperature and plasma density, show the strongest anti-correlation with the increase in bulk velocity.
format Preprint
id arxiv_https___arxiv_org_abs_2605_01511
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle On the Radial Evolution of the Solar Wind : The Source Alignment Method Applied to Parker Solar Probe and Solar Orbiter Observations
Dakeyo, Jean-Baptiste
Ervin, Tamar
Bale, Stuart
Démoulin, Pascal
Sioulas, Nikos
Réville, Victor
Liu, Mingzhe
Rouillard, Alexis
Maksimovic, Milan
Larson, Davin
Romeo, Orlando
Louarn, Philippe
Livi, Roberto
Solar and Stellar Astrophysics
Space Physics
The properties of the solar wind, as measured in situ throughout the heliosphere, depend both on the characteristics of its coronal source and on the intrinsic processes governing its interplanetary evolution. Recently, radial and Parker spiral alignment techniques have been applied to Parker Solar Probe (PSP) and Solar Orbiter (SO) observations to investigate the radial evolution of the same solar wind parcel. These studies have shown that the solar wind can undergo significant acceleration even beyond its primary acceleration region (i.e., above 15 solar radii). However, such radial and Parker spiral alignments are rare in practice, which limits the statistical significance and general applicability of the results. We introduce a new source alignment technique designed to overcome these limitations. Using magnetic backmapping, we associate similar solar wind streams observed by the two spacecraft based on the proximity of their photospheric footpoints, combined with additional in-situ stream similarity criteria. Applying the source alignment method to PSP and SO observations, we identify a total of 548 alignment intervals, each lasting 30 minutes. By constructing statistics over all alignments, we find that the solar wind speed increases by an average of 45% per radial decade (approximately 147 km/s) between the two probes. This result demonstrates that solar wind acceleration in the inner heliosphere remains significant compared to that occurring below 15 solar radii. Among the different studied plasma parameters, the radial evolution of the electron temperature and plasma density, show the strongest anti-correlation with the increase in bulk velocity.
title On the Radial Evolution of the Solar Wind : The Source Alignment Method Applied to Parker Solar Probe and Solar Orbiter Observations
topic Solar and Stellar Astrophysics
Space Physics
url https://arxiv.org/abs/2605.01511