activity
20142023
most citedObservations of an extreme storm in interplanetary space caused by successive coronal mass ejections

298 citations · 532 across the 9 of their papers we have counts for

collaborators

8 papers

astro-ph.SR20231 cited

L1 and off Sun-Earth line visible-light imaging of Earth-directed CMEs: An analysis of inconsistent observations

Richard A. Harrison, Jackie A. Davies, David Barnes +1

The efficacy of coronal mass ejection (CME) observations as a key input to space weather forecasting is explored by comparing on and off Sun-Earth line observations from the ESA/NA…

physics.space-ph20231 cited

Which Upstream Solar Wind Conditions Matter Most in Predicting Bz within Coronal Mass Ejections

Pete Riley, M. A. Reiss, C. Mostl

Accurately predicting the z-component of the interplanetary magnetic field, particularly during the passage of an interplanetary coronal mass ejection (ICME), is a crucial objectiv…

physics.space-ph2022

Unifying the Validation of Ambient Solar Wind Models

Martin A. Reiss, Karin Muglach, Richard Mullinix +18

Progress in space weather research and awareness needs community-wide strategies and procedures to evaluate our modeling assets. Here we present the activities of the Ambient Solar…

physics.space-ph201989 cited

Self-Similarity of ICME Flux Ropes: Observations by Radially Aligned Spacecraft in the Inner Heliosphere

S. W. Good, E. K. J. Kilpua, A. T. LaMoury +3

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 propagatio…

astro-ph.SR201952 cited

Heliospheric Evolution of Magnetic Clouds

Bojan Vršnak, Tanja Amerstorfer, Mateja Dumbović +7

Interplanetary evolution of eleven magnetic clouds (MCs) recorded by at least two radially aligned spacecraft is studied. The in situ magnetic field measurements are fitted to a cy…

physics.space-ph201643 cited

Prediction of Geomagnetic Storm Strength from Inner Heliospheric In Situ Observations

M. Kubicka, C. Möstl, T. Amerstorfer +4

Prediction of the effects of coronal mass ejections (CMEs) on Earth strongly depends on knowledge of the interplanetary magnetic field southward component, Bz. Predicting the stren…