activity
20152026
most citedCME-CME Interactions as Sources of CME Geo-effectiveness: The Formation of the Complex Ejecta and Intense Geomagnetic Storm in Early September 2017

112 citations · 410 across the 21 of their papers we have counts for

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Showing 2019Show all

6 papers · 1 filter

astro-ph.SR2019★ 112 cited

CME-CME Interactions as Sources of CME Geo-effectiveness: The Formation of the Complex Ejecta and Intense Geomagnetic Storm in Early September 2017

Camilla Scolini, Emmanuel Chané, Manuela Temmer +9

Coronal mass ejections (CMEs) are the primary sources of intense disturbances at Earth, where their geo-effectiveness is largely determined by their dynamic pressure and internal m…

physics.space-ph2019

Mars' plasma system. Scientific potential of coordinated multi-point missions: "The next generation" (A White Paper submitted to ESA's Voyage 2050 Call)

Beatriz Sánchez-Cano, Mark Lester, David J. Andrews +27

The objective of this White Paper submitted to ESA's Voyage 2050 call is to get a more holistic knowledge of the dynamics of the Martian plasma system from its surface up to the un…

astro-ph.SR2019

Unusual plasma and particle signatures at Mars and STEREO-A related to CME-CME interaction

Mateja Dumbovic, Jingnan Guo, Manuela Temmer +15

On July 25 2017 a multi-step Forbush decrease (FD) with the remarkable total amplitude of more than 15\% was observed by MSL/RAD at Mars. We find that these particle signatures are…

physics.space-ph2019★ 11 cited

Tracking and Validating ICMEs Propagating Toward Mars Using STEREO Heliospheric Imagers Combined With Forbush Decreases Detected by MSL/RAD

Johan L. Freiherr von Forstner, Jingnan Guo, Robert F. Wimmer-Schweingruber +7

The Radiation Assessment Detector (RAD) instrument onboard the Mars Science Laboratory (MSL) mission's Curiosity rover has been measuring galactic cosmic rays (GCR) as well as sola…

physics.space-ph2019★ 24 cited

Ready functions for calculating the Martian radiation environment

Jingnan Guo, Robert F. Wimmer-Schweingruber, Manuel Grande +2

It is extremely important to understand and model the Martian radiation environment in preparation for future human missions to Mars, especially during extreme and elevated conditi…

physics.space-ph2019★ 40 cited

Implementation and validation of the GEANT4/AtRIS code to model the radiation environment at Mars

Jingnan Guo, Saša Banjac, Lennart Roestel +4

A new GEANT4 particle transport model -- the Atmospheric Radiation Interaction Simulator (AtRIS, Banjac et al. 2018a. J. Geophys. Res.) -- has been recently developed in order to m…