Abstract Interplanetary coronal mass ejections (ICMEs) are a significant feature of the heliospheric environment and the primary cause of adverse space weather at the Earth. ICME propagation, and the evolution of ICME magnetic field structure during propagation, are still not fully understood. We analyze the magnetic field structures of 18 ICME magnetic flux ropes observed by radially aligned spacecraft in the inner heliosphere. Similarity in the underlying flux rope structures is determined through the application of a simple technique that maps the magnetic field profile from one spacecraft to the other. In many cases, the flux ropes show very strong underlying similarities at the different spacecraft. The mapping technique reveals simila...
Interplanetary coronal mass ejections (ICMEs) primarily move radially as they propagate away from th...
We present observations of the same magnetic cloud made near Earth by the Advance Composition Explor...
Context. Late on 2013 August 19, a coronal mass ejection (CME) erupted from an active region located...
Interplanetary coronal mass ejections (ICMEs) are a significant feature of the heliospheric environm...
Interplanetary coronal mass ejections (ICMEs) are large scale structures of plasma and magnetic fiel...
We use data on an interplanetary coronal mass ejection (ICME) seen by MErcury Surface, Space ENviron...
Predicting the magnetic field within an Earth-directed coronal mass ejection (CME) well before its a...
Interplanetary Coronal Mass Ejections (ICMEs) originate from the eruption of complex magnetic struct...
A key aim in space weather research is to be able to use remote-sensing observations of the solar at...
We investigate here the magnetic properties of a large-scale magnetic flux rope related to a coronal...
Coronal mass ejections (CMEs) expelled from the solar corona are a major space weather driver, both ...
We study two interplanetary coronal mass ejections (ICMEs) observed at Mercury and at 1 au by spacec...
International audienceThe solar wind conditions at one astronomical unit (AU) can be strongly distur...
We report on a study comparing coronal flux ropes inferred from eruption data with their interplanet...
Publisher Copyright: © 2021 COSPARMagnetic helicity, an intrinsic property of eruptive helical flux ...
Interplanetary coronal mass ejections (ICMEs) primarily move radially as they propagate away from th...
We present observations of the same magnetic cloud made near Earth by the Advance Composition Explor...
Context. Late on 2013 August 19, a coronal mass ejection (CME) erupted from an active region located...
Interplanetary coronal mass ejections (ICMEs) are a significant feature of the heliospheric environm...
Interplanetary coronal mass ejections (ICMEs) are large scale structures of plasma and magnetic fiel...
We use data on an interplanetary coronal mass ejection (ICME) seen by MErcury Surface, Space ENviron...
Predicting the magnetic field within an Earth-directed coronal mass ejection (CME) well before its a...
Interplanetary Coronal Mass Ejections (ICMEs) originate from the eruption of complex magnetic struct...
A key aim in space weather research is to be able to use remote-sensing observations of the solar at...
We investigate here the magnetic properties of a large-scale magnetic flux rope related to a coronal...
Coronal mass ejections (CMEs) expelled from the solar corona are a major space weather driver, both ...
We study two interplanetary coronal mass ejections (ICMEs) observed at Mercury and at 1 au by spacec...
International audienceThe solar wind conditions at one astronomical unit (AU) can be strongly distur...
We report on a study comparing coronal flux ropes inferred from eruption data with their interplanet...
Publisher Copyright: © 2021 COSPARMagnetic helicity, an intrinsic property of eruptive helical flux ...
Interplanetary coronal mass ejections (ICMEs) primarily move radially as they propagate away from th...
We present observations of the same magnetic cloud made near Earth by the Advance Composition Explor...
Context. Late on 2013 August 19, a coronal mass ejection (CME) erupted from an active region located...