In situ observations of large amplitude Alfvén waves heating and accelerating the solar wind
arXiv:2409.00267 · doi:10.1126/science.adk6953
Abstract
After leaving the Sun's corona, the solar wind continues to accelerate and cools, but more slowly than expected for a freely expanding adiabatic gas. We use in situ measurements from the Parker Solar Probe and Solar Orbiter spacecrafts to investigate a stream of solar wind as it traverses the inner heliosphere. The observations show heating and acceleration of the the plasma between the outer edge of the corona and near the orbit of Venus, in connection to the presence of large amplitude Alfvén waves. Alfvén waves are perturbations in the interplanetary magnetic field that transport energy. Our calculations show the damping and mechanical work performed by the Alfvén waves is sufficient to power the heating and acceleration of the fast solar wind in the inner heliosphere.
This is the author's version of the work. It is posted here by permission of the AAAS for personal use, not for redistribution. The definitive version was published in Science on August 30 2024, DOI: 10.1126/science.adk6953
References in corpus (13)
- The Solar Orbiter mission -- Science overview
- Observation of inertial energy cascade in interplanetary space plasma
- Magnetic connectivity of the ecliptic plane within 0.5 AU : PFSS modeling of the first PSP encounter
- Electrons in the Young Solar Wind: First Results from the Parker Solar Probe
- A solar source of Alfvénic magnetic field switchbacks: {\em in situ} remnants of magnetic funnels on supergranulation scales
- Interchange reconnection as the source of the fast solar wind within coronal holes
- Evolution of switchbacks in the inner Heliosphere
- The Radial Evolution of the Solar Wind as Organized by Electron Distribution Parameters
- Statistical Analysis of the Radial Evolution of the Solar Winds between 0.1 and 1 au, and their Semi-empirical Iso-poly Fluid Modeling
- Prediction and Verification of Parker Solar Probe Solar Wind Sources at 13.3 R
- Acceleration of polytropic solar wind: Parker Solar Probe observation and one-dimensional model
- Quantifying the Energy Budget in the Solar Wind from 13.3-100 Solar Radii
- Density And Velocity Fluctuations of Alpha Particles in Magnetic Switchbacks
Cited by in corpus (17)
- Cross Helicity and the Helium Abundance as an in situ Metric of Solar Wind Acceleration
- On the transition from Slow to Fast Wind as Observed in Composition Observations
- A study of particle acceleration, heating, power deposition, and the damping length of kinetic Alfvén waves in non-Maxwellian coronal plasma
- Dominance of 2-Minute Oscillations near the Alfvén Surface
- The Evolution of Heavy Ion Abundances with Solar Activity
- Formation of Magnetic Switchbacks via expanding Alfvén Waves
- Evolution of MHD turbulence in the expanding solar wind: residual energy and intermittency
- A prolific solar flare factory. Nearly continuous monitoring of an active region nest with Solar Orbiter
- Solar Alfvenic Pulses and Mesoscale Solar Wind
- Characterizing the Impact of Alfvén Wave Forcing in Interplanetary Space on the Distribution of near-Earth Solar Wind Speeds
- Insights into Solar Wind Flow Speeds from the Coronal Radio occultation Experiment: Findings from the Indian Mars Orbiter Mission
- Nested active regions anchor the heliospheric current sheet and stall the reversal of the coronal magnetic field
- Chaotic Motion of Ions In Finite-amplitude Low-frequency Alfvén Waves
- On the Regulation of the Solar Wind Helium Abundance by the Hydrogen Compressibility
- von Karman - Howarth Similarity of Spatial Correlations and the Distribution of Correlation Lengths in Solar Photospheric Turbulence
- A parametric study of solar wind properties and composition using fluid and kinetic solar wind models
- The influence of Parker spiral on the reflection-driven turbulence