Inconsistencies Between Local and Global Measures of CME Radial Expansion as Revealed by Spacecraft Conjunctions
arXiv:2007.01699 · doi:10.3847/1538-4357/aba26b
Abstract
The radial expansion of coronal mass ejections (CMEs) is known to occur from remote observations; from the variation of their properties with radial distance; and from local in situ plasma measurements showing a decreasing speed profile throughout the magnetic ejecta (ME). However, little is known on how local measurements compare to global measurements of expansion. Here, we present results from the analysis of 42 CMEs measured in the inner heliosphere by two spacecraft in radial conjunction. The magnetic field decrease with distance provides a measure of their global expansion. Near 1 au, the decrease in their bulk speed provides a measure of their local expansion. We find that these two measures have little relation with each other. We also investigate the relation between characteristics of CME expansion and CME properties. We find that the expansion depends on the initial magnetic field strength inside the ME, but not significantly on the magnetic field inside the ME measured near 1 au. This is an indirect evidence that CME expansion in the innermost heliosphere is driven by the high magnetic pressure inside the ME, while by the time the MEs reach 1 au, they are expanding due to the decrease in the solar wind dynamic pressure with distance. We also determine the evolution of the ME tangential and normal magnetic field components with distance, revealing significant deviations as compared to the expectations from force-free field configurations as well as some evidence that the front half of MEs expand at a faster rate than the back half.
14 pages, accepted to ApJ
References in corpus (8)
- Global and local expansion of magnetic clouds in the inner heliosphere
- Self-Similarity of ICME Flux Ropes: Observations by Radially Aligned Spacecraft in the Inner Heliosphere
- Linking two consecutive nonmerging magnetic clouds with their solar sources
- Generic magnetic field intensity profiles of interplanetary coronal mass ejections at Mercury, Venus and Earth from superposed epoch analyses
- Shocks inside CMEs: A Survey of Properties from 1997 to 2006
- Heliospheric Evolution of Magnetic Clouds
- Importance of CME Radial Expansion on the Ability of Slow CMEs to Drive Shocks
- Evolution of CME Properties in the Inner Heliosphere: Prediction for Solar Orbiter and Parker Solar Probe
Cited by in corpus (7)
- On the Mesoscale Structure of CMEs at Mercury's Orbit: BepiColombo and Parker Solar Probe Observations
- The effect of stream interaction regions on ICME structures observed in longitudinal conjunction
- A Coronal Mass Ejection and Magnetic Ejecta Observed In Situ by STEREO-A and Wind at 55 Angular Separation
- Direct First PSP Observation of the Interaction of Two Successive Interplanetary Coronal Mass Ejections in November 2020
- Evolution of interplanetary coronal mass ejection complexity: a numerical study through a swarm of simulated spacecraft
- Over-expansion of coronal mass ejections modelled using 3D MHD EUHFORIA simulations
- On modeling ICME cross-sections as static MHD columns