Parker Solar Probe Observations of Suprathermal Electron Flux Enhancements Originating from Coronal Hole Boundaries
arXiv:2009.01558 · doi:10.1093/mnras/staa2660
Abstract
Reconnection between pairs of solar magnetic flux elements, one open and the other a closed loop, is theorised to be a crucial process for both maintaining the structure of the corona and producing the solar wind. This 'interchange reconnection' is expected to be particularly active at the open-closed boundaries of coronal holes (CHs). Previous analysis of solar wind data at 1AU indicated that peaks in the flux of suprathermal electrons at slow-fast stream interfaces may arise from magnetic connection to the CH boundary, rather than dynamic effects such as compression. Further, offsets between the peak and stream interface locations are suggested to be the result of interchange reconnection at the source. As a preliminary test of these suggestions, we analyse two solar wind streams observed during the first Parker Solar Probe (PSP) perihelion encounter, each associated with equatorial CH boundaries (one leading and one trailing with respect to rotation). Each stream features a peak in suprathermal electron flux, the locations and associated plasma properties of which are indicative of a solar origin, in agreement with previous suggestions from 1AU observations. Discrepancies between locations of the flux peaks and other features suggest these peaks may too be shifted by source region interchange reconnection. Our interpretation of each event is compatible with a global pattern of open flux transport, although random footpoint motions or other explanations remain feasible. These exploratory results highlight future opportunities for statistical studies regarding interchange reconnection and flux transport at CH boundaries with modern near-Sun missions.
References in corpus (13)
- Solar Coronal Jets: Observations, Theory, and Modeling
- The Solar Probe Cup on Parker Solar Probe
- In-situ switchback formation in the expanding solar wind
- 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
- Structure and Dynamics of the Sun's Open Magnetic Field
- Coronal-Jet-Producing Minifilament Eruptions as a Possible Source of Parker Solar Probe (PSP) Switchbacks
- Energetic Particle Increases Associated with Stream Interaction Regions
- The Evolution of Inverted Magnetic Fields Through the Inner Heliosphere
- Measurements of Solar Differential Rotation and Meridional Circulation from Tracking of Photospheric Magnetic Features
- Statistical properties of coronal hole rotation rates: Are they linked to the solar interior?
- On the Origin of Otho-Gardenhose Heliospheric Flux
- Statistics of Solar Wind Electron Breakpoint Energies Using Machine Learning Techniques
Cited by in corpus (4)
- Direct evidence for magnetic reconnection at the boundaries of magnetic switchbacks with Parker Solar Probe
- Stirring the Base of the Solar Wind: On Heat Transfer and Vortex Formation
- Statistical Evidence for Small-Scale Interchange Reconnection at a Coronal Hole Boundary
- Investigating the Relationship Between Physical Properties and Spatial Irregularities at Coronal Hole Boundaries