activity
20132026
most citedStrong coronal channelling and interplanetary evolution of a solar storm up to Earth and Mars

202 citations · 497 across the 14 of their papers we have counts for

collaborators
Showing 2020Show all

5 papers · 1 filter

astro-ph.SR2020

Analysis of coronal mass ejection flux rope signatures using 3DCORE and approximate Bayesian Computation

Andreas J. Weiss, Christian Möstl, Tanja Amerstorfer +5

We present a major update to the 3D coronal rope ejection (3DCORE) technique for modeling coronal mass ejection flux ropes in conjunction with an Approximate Bayesian Computation (…

physics.space-ph2020

Evaluation of CME Arrival Prediction Using Ensemble Modeling Based on Heliospheric Imaging Observations

Tanja Amerstorfer, Jürgen Hinterreiter, Martin A. Reiss +8

In this study, we evaluate a coronal mass ejection (CME) arrival prediction tool that utilizes the wide-angle observations made by STEREO's heliospheric imagers (HI). The unsurpass…

astro-ph.SR2020

Prediction of the in situ coronal mass ejection rate for solar cycle 25: Implications for Parker Solar Probe in situ observations

Christian Möstl, Andreas J. Weiss, Rachel L. Bailey +7

The Parker Solar Probe (PSP) and Solar Orbiter missions are designed to make groundbreaking observations of the Sun and interplanetary space within this decade. We show that a part…

astro-ph.SR2020

CMEs in the Heliosphere: III. A Statistical Analysis of the Kinematic Properties Derived from Stereoscopic Geometrical Modelling Techniques Applied to CMEs Detected in the Heliosphere from 2008 to 2014 by STEREO/HI-1

D. Barnes, J. A. Davies, R. A. Harrison +10

We present an analysis of coronal mass ejections (CMEs) observed by the Heliospheric Imagers (HIs) on board NASA's Solar Terrestrial Relations Observatory (STEREO) spacecraft. Betw…

astro-ph.SR202022 cited

Evolution of coronal mass ejections and the corresponding Forbush decreases: modelling vs multi-spacecraft observations

Mateja Dumbović, Bojan Vršnak, Jingnan Guo +9

One of the very common in situ signatures of interplanetary coronal mass ejections (ICMEs), as well as other interplanetary transients, are Forbush decreases (FDs), i.e. short-term…