CME Evolution in the Structured Heliosphere and Effects at Earth and Mars During Solar Minimum
arXiv:2209.05760 · doi:10.1029/2022SW003215
Abstract
The activity of the Sun alternates between a solar minimum and a solar maximum, the former corresponding to a period of "quieter" status of the heliosphere. During solar minimum, it is in principle more straightforward to follow eruptive events and solar wind structures from their birth at the Sun throughout their interplanetary journey. In this paper, we report analysis of the origin, evolution, and heliospheric impact of a series of solar transient events that took place during the second half of August 2018, i.e. in the midst of the late declining phase of Solar Cycle 24. In particular, we focus on two successive coronal mass ejections (CMEs) and a following high-speed stream (HSS) on their way towards Earth and Mars. We find that the first CME impacted both planets, whilst the second caused a strong magnetic storm at Earth and went on to miss Mars, which nevertheless experienced space weather effects from the stream interacting region (SIR) preceding the HSS. Analysis of remote-sensing and in-situ data supported by heliospheric modelling suggests that CME--HSS interaction resulted in the second CME rotating and deflecting in interplanetary space, highlighting that accurately reproducing the ambient solar wind is crucial even during "simpler" solar minimum periods. Lastly, we discuss the upstream solar wind conditions and transient structures responsible for driving space weather effects at Earth and Mars.
27 pages, 7 figures, 1 table, accepted for publication in Space Weather
References in corpus (14)
- JHelioviewer - Time-dependent 3D visualisation of solar and heliospheric data
- Sympathetic Magnetic Breakout Coronal Mass Ejections from Pseudostreamers
- CME-CME Interactions as Sources of CME Geo-effectiveness: The Formation of the Complex Ejecta and Intense Geomagnetic Storm in Early September 2017
- Determining the Intrinsic CME Flux Rope Type Using Remote-sensing Solar Disk Observations
- Interplanetary Propagation Behavior of the Fast Coronal Mass Ejection from 23 July 2012
- Shocks inside CMEs: A Survey of Properties from 1997 to 2006
- May 12 1997 Cme Event: I. a Simplified Model of the Pre-Eruptive Magnetic Structure
- First simultaneous in situ measurements of a coronal mass ejection by Parker Solar Probe and STEREO-A
- Peculiar solar sources and geospace disturbances on 20-26 August 2018
- Multipoint study of successive coronal mass ejections driving moderate disturbances at 1 AU
- A Model for Coronal Inflows and In/Out Pairs
- Interaction of Space Weather Phenomena With Mars Plasma Environment During Solar Minimum 23/24
- The Impact of a Stealth CME on the Martian Topside Ionosphere
- Linkage of Geoeffective Stealth CMEs Associated with the Eruption of Coronal Plasma channel and Jet-Like Structure