activity
20172024
most citedThe Solar Orbiter mission -- Science overview

1.1k citations · 1.2k across the 9 of their papers we have counts for

collaborators

9 papers

astro-ph.SR202416 cited

The multi-spacecraft high-energy solar particle event of 28 October 2021

A. Kouloumvakos, A. Papaioannou, C. O. G. Waterfall +15

Aims. We studied the first multi-spacecraft high-energy solar energetic particle (SEP) event of solar cycle 25, which triggered a ground level enhancement (GLE) on 28 October 2021,…

astro-ph.SR2023

Modelling two Energetic Storm Particle Events Observed by Solar Orbiter Using the Combined EUHFORIA and iPATH Models

Zheyi Ding, Gang Li, Glenn Mason +6

By coupling the EUropean Heliospheric FORcasting Information Asset (EUHFORIA) and the improved Particle Acceleration and Transport in the Heliosphere (iPATH) model, two energetic s…

physics.space-ph2023

Irregular proton injection to high energies at interplanetary shocks

Domenico Trotta, Timothy S. Horbury, David Lario +8

How thermal particles are accelerated to suprathermal energies is an unsolved issue, crucial for many astrophysical systems. We report novel observations of irregular, dispersive e…

physics.space-ph202322 cited

Backstreaming ions at a high Mach number interplanetary shock: Solar Orbiter measurements during the nominal mission phase

Andrew P. Dimmock, Michael Gedalin, Ahmad Lalti +9

Solar Orbiter, a mission developed by the European Space Agency, explores in situ plasma across the inner heliosphere while providing remote-sensing observations of the Sun. Our st…

astro-ph.SR2023

Scope and limitations of ad hoc neural network reconstructions of solar wind parameters

Maximilian Hecht, Verena Heidrich-Meisner, Lars Berger +1

Solar wind properties are determined by the conditions of their solar source region and transport history. Solar wind parameters, such as proton speed, proton density, proton tempe…

physics.space-ph202130 cited

Multi-spacecraft observations of the structure of the sheath of an interplanetary coronal mass ejection and related energetic ion enhancement

E. K. J. Kilpua, S. W. Good, N. Dresing +18

Sheaths ahead of coronal mass ejections (CMEs) are large heliospheric structures that form with CME expansion and propagation. Turbulent and compressed sheaths contribute to the ac…