Sub-Alfvenic Solar Wind observed by PSP: Characterization of Turbulence, Anisotropy, Intermittency, and Switchback
arXiv:2201.10718 · doi:10.3847/2041-8213/ac4a5c
Abstract
In the lower solar coronal regions where the magnetic field is dominant, the Alfven speed is much higher than the wind speed. In contrast, the near-Earth solar wind is strongly super-Alfvenic, i.e., the wind speed greatly exceeds the Alfven speed. The transition between these regimes is classically described as the "Alfven point" but may in fact occur in a distributed Alfven critical region. NASA's Parker Solar Probe (PSP) mission has entered this region, as it follows a series of orbits that gradually approach more closely to the sun. During its 8th and 9th solar encounters, at a distance of 16 solar radii from the Sun, PSP sampled four extended periods in which the solar wind speed was measured to be smaller than the local Alfven speed. These are the first in-situ detections of sub-Alfvenic solar wind in the inner heliosphere by PSP. Here we explore properties of these samples of sub-Alfvenic solar wind, which may provide important previews of the physical processes operating at lower altitude. Specifically, we characterize the turbulence, anisotropy, intermittency, and directional switchback properties of these sub-Alfvenic winds and contrast these with the neighboring super-Alfvenic periods.
Accepted for publication in the Astrophysical Journal Letter
References in corpus (8)
- Switchbacks in the near-Sun magnetic field: long memory and impact on the turbulence cascade
- First in-situ Measurements of Electron Density and Temperature from Quasi-Thermal Noise Spectroscopy with Parker Solar Probe/FIELDS
- Fading Coronal Structure and the Onset of Turbulence in the Young Solar Wind
- Ion kinetic energy conservation and magnetic field strength constancy in multi-fluid solar wind Alfvénic turbulence
- Switchbacks Explained: Super-Parker Fields -- the Other Side of the Sub-Parker Spiral
- Statistics of Kinetic Dissipation in Earth's Magnetosheath -- MMS Observations
- Strong Preferential Ion Heating is Limited to within the Solar Alfven Surface
- Observations of Energetic-Particle Population Enhancements along Intermittent Structures near the Sun from Parker Solar Probe
Cited by in corpus (21)
- New Observations of Solar Wind 1/f Turbulence Spectrum from Parker Solar Probe
- An Extended and Fragmented Alfvén Zone in the Young Solar Wind
- Magnetic field intermittency in the solar wind: PSP and SolO observations ranging from the Alfven region out to 1 AU
- On the Generation and Evolution of Switchbacks and the Morphology of Alfvénic Transition: Low Mach-number Boundary Layers
- Helios 2 observations of solar wind turbulence decay in the inner heliosphere
- Anisotropic Magnetic Turbulence in the Inner Heliosphere -- Radial Evolution of Distributions observed by Parker Solar Probe
- Reconciling Parker Solar Probe observations and magnetohydrodynamic theory
- An analytical model of turbulence in Parker spiral geometry and associated magnetic field line lengths
- Propagation of untwisting solar jets from the low-beta corona into the super-Alfvénic wind: Testing a solar origin scenario for switchbacks
- Analytic Model and Magnetohydrodynamic Simulations of Three-dimensional Magnetic Switchbacks
- Near subsonic solar wind outflow from an active region
- Estimating uncertainties in the back-mapping of the fast solar wind
- Association of intermittency with electron heating in the near-Sun solar wind
- Polarimeter to Unify the Corona and Heliosphere (PUNCH)
- Dominance of 2-Minute Oscillations near the Alfvén Surface
- Modeling hot, anisotropic ion beams in the solar wind motivated by the Parker Solar Probe observations near perihelia
- Turbulence dynamics and flow speeds in the inner solar corona: Results from radio-sounding experiments by the Akatsuki spacecraft
- Observed Fluctuation Enhancement and Departure from WKB Theory in Sub-Alfvénic Solar Wind
- Energetic particle acceleration and transport with the novel IcarusPARADISE model
- Does Turbulence along the Coronal Current Sheet Drive Ion Cyclotron Waves?
- Isotropization and Evolution of Energy-Containing Eddies in Solar Wind Turbulence: Parker Solar Probe, Helios 1, ACE, WIND, and Voyager 1