Statistics of coronal dimmings associated with coronal mass ejections. II. Relationship between coronal dimmings and their associated CMEs
arXiv:1810.01589 · doi:10.3847/1538-4357/ab0962
Abstract
We present a statistical study of 62 coronal dimming events associated with Earth-directed CMEs during the quasi-quadrature period of STEREO and SDO. This unique setting allows us to study both phenomena in great detail and compare characteristic quantities statistically. Coronal dimmings are observed on-disk by SDO/AIA and HMI, while the CME kinematics during the impulsive acceleration phase is studied close to the limb with STEREO/EUVI and COR, minimizing projection effects. The dimming area, its total unsigned magnetic flux and its total brightness, reflecting properties of the total dimming region at its final extent, show the highest correlations with the CME mass (). Their corresponding time derivatives, describing the dynamics of the dimming evolution, show the strongest correlations with the CME peak velocity (). The highest correlation of is found with the mean intensity of dimmings, indicating that the lower the CME starts in the corona, the faster it propagates. No significant correlation between dimming parameters and the CME acceleration was found. However, for events where high-cadence STEREO observations were available, the mean unsigned magnetic field density in the dimming regions tends to be positively correlated with the CME peak acceleration (). This suggests that stronger magnetic fields result in higher Lorentz forces providing stronger driving force for the CME acceleration. Specific coronal dimming parameters correlate with both, CME and flare quantities providing further evidence for the flare-CME feedback relationship. For events in which the CME occurs together with a flare, coronal dimmings statistically reflect the properties of both phenomena.
17 pages, 14 figures, 1 table, submitted to ApJ
References in corpus (13)
- The origin, early evolution and predictability of solar eruptions
- No Trace Left Behind: Stereo Observation of a Coronal Mass Ejection without Low Coronal Signatures
- A Database of Flare Ribbon Properties From Solar Dynamics Observatory I: Reconnection Flux
- Statistics of coronal dimmings associated with coronal mass ejections. I. Characteristic dimming properties and flare association
- Relationship of EUV Irradiance Coronal Dimming Slope and Depth to Coronal Mass Ejection Speed and Mass
- On the detection of coronal dimmings and the extraction of their characteristic properties
- Reconnection fluxes in eruptive and confined flares and implications for superflares on the Sun
- Plasma diagnostics of coronal dimming events
- Statistical study of solar dimmings using CoDiT
- Sunspot number second differences as a precursor of the following 11-year sunspot cycle
- Gradual Solar Coronal Dimming and Evolution of Coronal Mass Ejection in the Early Phase
- Global Energetics of Solar Flares: VI. Refined Energetics of Coronal Mass Ejections
- Mass Loss Evolution in the EUV Low Corona from SDO/AIA Data
Cited by in corpus (32)
- Extreme solar events
- Indications of stellar coronal mass ejections through coronal dimmings
- CME -- HSS interaction and characteristics tracked from Sun to Earth
- Upflows in the upper solar atmosphere
- A census of Coronal Mass Ejections on solar-like stars
- Magnetohydrodynamic Simulation of Magnetic Null-point Reconnections and Coronal dimmings during the X2.1 flare in NOAA AR 11283
- Spectroscopy and Differential Emission Measure diagnostics of a coronal dimming associated with a fast halo CME
- Observational Analysis on the Early Evolution of a CME Flux-rope: Pre-flare reconnection and Flux-rope's Footpoint Drift
- Modelling a multi-spacecraft coronal mass ejection encounter with EUHFORIA
- Coronal Mass Ejections and Dimmings: A Comparative Study using MHD Simulations and SDO Observations
- Solar Flare-CME Coupling Throughout Two Acceleration Phases of a Fast CME
- Coronal dimmings associated with coronal mass ejections on the solar limb
- Using radio triangulation to understand the origin of two subsequent type II radio bursts
- OSPREI: A Coupled Approach to Modeling CME-Driven Space Weather with Automatically-Generated, User-Friendly Outputs
- On the three-dimensional relation between the coronal dimming, erupting filament and CME. Case study of the 28 October 2021 X1.0 event
- Investigating pre-eruptive magnetic properties at the footprints of erupting magnetic flux ropes
- The 2019 International Women's Day event: A two-step solar flare with multiple eruptive signatures and low Earth impact
- Tracking magnetic flux and helicity from Sun to Earth -- Multi-spacecraft analysis of a magnetic cloud and its solar source
- Synthetic Remote-sensing and In-situ Observations of Fine-scale Structure in a Pseudostreamer Coronal Mass Ejection through the Solar Corona
- Coronal dimmings as indicators of early CME propagation direction
- Remote coronal dimmings related to a circular-ribbon flare
- Magnetohydrodynamic simulation of coronal mass ejections using interplanetary scintillation data observed from radio sites ISEE and LOFAR
- Numerical study of solar eruption, extreme-ultraviolet wave propagation, and wave-induced prominence dynamics
- Multi-point study of the energy release and impulsive CME dynamics in an eruptive C7 flare
- The Merging of a Coronal Dimming and the Southern Polar Coronal Hole
- Coronal dimmings from active region 13664 during the May 2024 solar energetic events
- Three-part structure of solar coronal mass ejection observed in low coronal signatures of Solar Orbiter
- Understanding the Origins of Problem Geomagnetic Storms Associated With "Stealth" Coronal Mass Ejections
- Space weather: the solar perspective -- an update to Schwenn (2006)
- Detecting Stellar Coronal Mass Ejections via Coronal Dimming in the Extreme Ultraviolet
- Comparative analysis of two episodes of strongly geoeffective CME events in November and December 2023
- Characteristics and evolution of sheath and leading edge structures of interplanetary coronal mass ejections in the inner heliosphere based on Helios and Parker Solar Probe observations