arXiv · 2602.10275
Solar Wind Heating Near the Sun: A Radial Evolution Approach
Abstract
Characterizing the plasma state in the near-Sun environment is essential to constrain the mechanisms that heat and accelerate the solar wind. In this study, we use Parker Solar Probe (PSP) observations from Encounters 1 through 24 to investigate the radial evolution of solar wind plasma and magnetic field properties in this region. Using intervals with high field-of-view ($>85\%$) coverage, we derive the radial profiles of magnetic field strength ($|B|$), proton density ($N$), bulk speed ($V$), total proton temperature ($T$), parallel ($T_\parallel$) and perpendicular ($T_\perp$) temperatures, temperature anisotropy ($T_\perp/T_\parallel$), plasma beta ($\beta$), Alfv\'{e}n Mach number ($M_A$), and magnetic field fluctuations ($\delta B/B$) for sub and super-Alfv\'{e}nic regions. In super-Alfv\'{e}nic regions, power-law of $|B|$, $N$, $V$, and $T$ as a function of heliocentric distance are broadly consistent with previous \textit{Helios} results at $>0.3$ AU. The radial evolution of the components of the temperature tensor reveals distinct behavior: $T_\perp$ decreases monotonically with distance, whereas $T_\parallel$ exhibits a non-monotonic trend -- decreasing in the sub-Alfv\'{e}nic region, increasing just beyond the Alfv\'{e}n surface. We interpret the increase in $T_\parallel$ as a proxy for proton beam occurrence. We further examine the evolution of magnetic field fluctuations, finding decreasing radial/parallel fluctuations but enhanced tangential/normal/perpendicular fluctuations in sunward direction. These fluctuations may provide free energy for beam generation and particle heating via wave-particle interactions.
Explore related subjects
Keep this discovery
Yogesh, Leon Ofman, Kristopher Klein, Niranjana Shankarappa, Mihailo M. Martinović, Gregory G. Howes, Parisa Mostafavi, Scott A Boardsen, Viacheslav M Sadykov, Sanchita Pal, Lan K Jian, Aakash Gupta, D. Chakrabarty, B. L. Alterman, Jaye L Verniero, K. W. Paulson, Jia Huang, Roberto Livi, Davin E. Larson, Christian Möstl, Emma E. Davies, Eva Weiler. 2026-02-10. Solar Wind Heating Near the Sun: A Radial Evolution Approach. https://arxiv.org/abs/2602.10275
Cite the original work for its findings. Save a collection to share your selection of sources.