Clustering of Intermittent Magnetic and Flow Structures near Parker Solar Probe's First Perihelion -- A Partial-Variance-of-Increments Analysis
arXiv:1912.03608 · doi:10.3847/1538-4365/ab53d2
Abstract
During the Parker Solar Probe's (PSP) first perihelion pass, the spacecraft reached within a heliocentric distance of \(\sim 37~R_\odot\) and observed numerous magnetic and flow structures characterized by sharp gradients. To better understand these intermittent structures in the young solar wind, an important property to examine is their degree of correlation in time and space. To this end, we use the well-tested Partial Variance of Increments (PVI) technique to identify intermittent events in FIELDS and SWEAP observations of magnetic and proton-velocity fields (respectively) during PSP's first solar encounter, when the spacecraft was within 0.25 au from the Sun. We then examine distributions of waiting times between events with varying separation and PVI thresholds. We find power-law distributions for waiting times shorter than a characteristic scale comparable to the correlation time, suggesting a high degree of correlation that may originate in a clustering process. Waiting times longer than this characteristic time are better described by an exponential, suggesting a random memory-less Poisson process at play. These findings are consistent with near-Earth observations of solar wind turbulence. The present study complements the one by Dudok de Wit et al. (2020, present volume), which focuses on waiting times between observed "switchbacks" in the radial magnetic field.
References in corpus (15)
- The Evolution and Role of Solar Wind Turbulence in the Inner Heliosphere
- Switchbacks in the near-Sun magnetic field: long memory and impact on the turbulence cascade
- The Solar Probe Cup on Parker Solar Probe
- Magnetic Reconnection and Intermittent Turbulence in the Solar Wind
- Enhanced Energy Transfer Rate in Solar Wind Turbulence Observed near the Sun from Parker Solar Probe
- Observational evidence for self-generation of small-scale magnetic flux ropes from intermittent solar wind turbulence
- Propinquity of current and vortex structures: effects on collisionless plasma heating
- Magnetic Discontinuities in Magnetohydrodynamic Turbulence and in the Solar Wind
- Contextual Predictions for Parker Solar Probe II: Turbulence Properties and Taylor Hypothesis
- The clustering of polarity reversals of the geomagnetic field
- Characterization of the Turbulent Magnetic Integral Length in the Solar Wind: From 0.3 to 5 Astronomical Units
- Observations of heating along intermittent structures in the inner heliosphere from PSP data
- A Modified Version of Taylor's Hypothesis for Solar Probe Plus Observations
- Observations of Energetic-Particle Population Enhancements along Intermittent Structures near the Sun from Parker Solar Probe
- On the interpretation of Parker Solar Probe Turbulent Signals
Cited by in corpus (22)
- In-situ switchback formation in the expanding solar wind
- Parker Solar Probe: Four Years of Discoveries at Solar Cycle Minimum
- Enhanced Energy Transfer Rate in Solar Wind Turbulence Observed near the Sun from Parker Solar Probe
- Subproton-scale Intermittency in Near-Sun Solar Wind Turbulence Observed by the Parker Solar Probe
- Multiscale Solar Wind Turbulence Properties inside and near Switchbacks measured by Parker Solar Probe
- Observations of heating along intermittent structures in the inner heliosphere from PSP data
- Large-scale Structure and Turbulence Transport in the Inner Solar Wind -- Comparison of Parker Solar Probe's First Five Orbits with a Global 3D Reynolds-averaged MHD Model
- Observations of Energetic-Particle Population Enhancements along Intermittent Structures near the Sun from Parker Solar Probe
- Magnetic field intermittency in the solar wind: PSP and SolO observations ranging from the Alfven region out to 1 AU
- Statistical analysis of intermittency and its association with proton heating in the near Sun environment
- The Structure and Origin of Switchbacks: Parker Solar Probe Observations
- Parker Solar Probe Observations of Helical Structures as Boundaries for Energetic Particles
- Preferential Proton over Electron heating from coherent structures during the first perihelion of Parker Solar Probe
- The S-Web Origin of Composition Enhancement in the Slow-to-Moderate Speed Solar Wind
- Reconciling Parker Solar Probe observations and magnetohydrodynamic theory
- Formation and Evolution of Coherent Structures in 3D Strongly Turbulent Magnetized Plasmas
- Solar Chromospheric Network as a Source for Solar Wind Switchbacks
- Domains of Magnetic Pressure Balance in Parker Solar Probe Observations of the Solar Wind
- Understanding the level of Turbulence by Asymmetric Distributions: a motivation for measurements in Space Plasmas
- Machine-Learning Characterization of Intermittency in Relativistic Pair Plasma Turbulence: Single and Double Sheet Structures
- Evaluation of scale-dependent kurtosis with HelioSwarm
- Magnetic Switchback Occurrence Rates in the Inner Heliosphere: Parker Solar Probe and 1 au