On Sun-to-Earth Propagation of Coronal Mass Ejections: 2. Slow Events and Comparison with Others
arXiv:1512.07949 · doi:10.3847/0067-0049/222/2/23
Abstract
As a follow-up study on Sun-to-Earth propagation of fast coronal mass ejections (CMEs), we examine the Sun-to-Earth characteristics of slow CMEs combining heliospheric imaging and in situ observations. Three events of particular interest, the 2010 June 16, 2011 March 25 and 2012 September 25 CMEs, are selected for this study. We compare slow CMEs with fast and intermediate-speed events, and obtain key results complementing the attempt of \citet{liu13} to create a general picture of CME Sun-to-Earth propagation: (1) the Sun-to-Earth propagation of a typical slow CME can be approximately described by two phases, a gradual acceleration out to about 20-30 solar radii, followed by a nearly invariant speed around the average solar wind level, (2) comparison between different types of CMEs indicates that faster CMEs tend to accelerate and decelerate more rapidly and have shorter cessation distances for the acceleration and deceleration, (3) both intermediate-speed and slow CMEs would have a speed comparable to the average solar wind level before reaching 1 AU, (4) slow CMEs have a high potential to interact with other solar wind structures in the Sun-Earth space due to their slow motion, providing critical ingredients to enhance space weather, and (5) the slow CMEs studied here lack strong magnetic fields at the Earth but tend to preserve a flux-rope structure with axis generally perpendicular to the radial direction from the Sun. We also suggest a "best" strategy for the application of a triangulation concept in determining CME Sun-to-Earth kinematics, which helps to clarify confusions about CME geometry assumptions in the triangulation and to improve CME analysis and observations.
37 pages, 13 figures, accepted for publication in ApJ Supplement
References in corpus (10)
- Observations of an extreme storm in interplanetary space caused by successive coronal mass ejections
- No Trace Left Behind: Stereo Observation of a Coronal Mass Ejection without Low Coronal Signatures
- Strong coronal channelling and interplanetary evolution of a solar storm up to Earth and Mars
- Connecting speeds, directions and arrival times of 22 coronal mass ejections from the Sun to 1 AU
- Determining the azimuthal properties of coronal mass ejections from multi-spacecraft remote-sensing observations with stereo secchi
- A Comprehensive View of the 2006 December 13 CME: From the Sun to Interplanetary Space
- Plasma and Magnetic Field Characteristics of Solar Coronal Mass Ejections in Relation to Geomagnetic Storm Intensity and Variability
- Heliospheric Propagation of Coronal Mass Ejections: Drag-Based Model Fitting
- Evolution and Consequences of Interacting CMEs of 2012 November 9-10 using STEREO/SECCHI and In Situ Observations
- Combined Multipoint Remote and In Situ Observations of the Asymmetric Evolution of a Fast Solar Coronal Mass Ejection
Cited by in corpus (29)
- Drag-Based Ensemble Model (DBEM) for Coronal Mass Ejection Propagation
- A STEREO Survey of Magnetic Cloud Coronal Mass Ejections Observed at Earth in 2008--2012
- Sun-to-Earth Characteristics of the 2012 July 12 Coronal Mass Ejection and Associated Geo-effectiveness
- Probabilistic Drag-Based Ensemble Model (DBEM) Evaluation for Heliospheric Propagation of CMEs
- Modeling the thermodynamic evolution of Coronal Mass Ejections (CMEs) using their kinematics
- Evolution of a Long-Duration Coronal Mass Ejection and its Sheath Region Between Mercury and Earth on 2013 July 9-14
- What is Unusual about the Third Largest Geomagnetic Storm of Solar Cycle 24?
- Importance of CME Radial Expansion on the Ability of Slow CMEs to Drive Shocks
- A Comparative Study of 2017 July and 2012 July Complex Eruptions: Are Solar Superstorms "Perfect Storms" in Nature?
- Characteristics of a Gradual Filament Eruption and Subsequent CME Propagation in Relation to a Strong Geomagnetic Storm
- A Stealth CME Bracketed between Slow and Fast Wind Producing Unexpected Geo-effectiveness
- Assessing the collision nature of coronal mass ejections in the inner heliosphere
- Modeling Interplanetary Expansion and Deformation of CMEs with ANTEATR-PARADE I: Relative Contribution of Different Forces
- Multi-Spacecraft Observations of the Rotation and Non-Radial Motion of a CME Flux Rope causing an intense geomagnetic storm
- Comparison of magnetic properties in a magnetic cloud and its solar source on April 11-14 2013
- Multi-spacecraft Observations of the Coronal and Interplanetary Evolution of a Solar Eruption Associated with Two Active Regions
- The Impact of a Stealth CME on the Martian Topside Ionosphere
- Contribution of the aging effect to the observed asymmetry of interplanetary magnetic clouds
- Quantifying the Propagation of Fast Coronal Mass Ejections from the Sun to Interplanetary Space Combining Remote Sensing and Multi-Point in-situ Observations
- Comparison of CME/shock propagation models with heliospheric imaging and in situ observations
- Quantifying the uncertainty in CME kinematics derived from geometric modelling of Heliospheric Imager data
- Propagation and Interaction Properties of Successive Coronal Mass Ejections in Relation to a Complex Type II Radio Burst
- Tracking and Validating ICMEs Propagating Toward Mars Using STEREO Heliospheric Imagers Combined With Forbush Decreases Detected by MSL/RAD
- A coronal mass ejection encountered by four spacecraft within 1 au from the Sun: Ensemble modelling of propagation and magnetic structure
- Propagation Characteristics of Two Coronal Mass Ejections From the Sun Far into Interplanetary Space
- An application of the weighted horizontal magnetic gradient to solar compact and eruptive events
- Recurrent Solar Energetic Particle Flux Enhancements Observed near Earth and Mars
- Interaction of coronal mass ejections and the solar wind. A force analysis
- Multispacecraft Remote Sensing and In Situ Observations of the 2020 November 29 Coronal Mass Ejection and Associated Shock: From Solar Source to Heliospheric Impacts