SFB1491 - CIM

Cosmic Interacting Matters - From Source to Signal

Profile Info

Affiliation: Institute for Theoretical Physics I, Ruhr University Bochum,

Current status: Prof.

Publications: Clustering Wind data at 1 AU to contextualize magnetic reconnection in the solar wind, Energetic spectra from semi-implicit particle-in-cell simulations of magnetic reconnection, Impact of nonthermal electron distributions on the triggering of the ion-ion acoustic instability near the Sun: Kinetic simulations, Optimal Landau-type closure parameters for two-fluid simulations of plasma turbulence at kinetic scales, Anisotropic heating and parallel heat flux in electron-only magnetic reconnection with intense guide fields, Particle-in-cell simulations of the tearing instability for relativistic pair plasmas, Quasi-parallel Antisunward-propagating Whistler Waves Associated with the Electron Deficit in the Near-Sun Solar Wind: Particle-in-cell Simulation, Fully Kinetic Simulations of Proton-beam-driven Instabilities from Parker Solar Probe Observations, The Regulation of the Solar Wind Electron Heat Flux by Wave–Particle Interactions, Clustering of global magnetospheric observations, Electrostatic Bursts Generated by the Ion–Ion Acoustic Instability with Solar Wind Plasma Parameters, Generation of Subion Scale Magnetic Holes from Electron Shear Flow Instabilities in Plasma Turbulence, Energy Conversion by Magnetic Reconnection in Multiple Ion Temperature Plasmas, Unsupervised classification of fully kinetic simulations of plasmoid instability using self-organizing maps (SOMs), Particle-in-cell simulations of Alfvén wave parametric decay in a low-beta plasma, Using Unsupervised Machine Learning to make new discoveries in space data, Electron-Driven Instabilities in the Solar Wind, Interaction between electrostatic collisionless shocks generates strong magnetic fields,

OrcID: https://orcid.org/0000-0002-5782-0013

Projects: Particle acceleration via magnetic reconnection in different regimes,