activity
20242026
most citedElectron Heat Flux and Whistler Instability in the Earth's Magnetosheath

1 citations · 1 across the 2 of their papers we have counts for

collaborators

6 papers

physics.space-ph2026

Reformation of Supercritical Perpendicular Shock

Yuri V. Khotyaintsev, Domenico Trotta, Daniel B. Graham

Super-critical collisionless shocks are not static structures but evolve continuously as they reflect incoming ions back upstream. The physical process responsible for this non-sta…

physics.space-ph20261 cited

Electron Heat Flux and Whistler Instability in the Earth's Magnetosheath

Ida Svenningsson, Emiliya Yordanova, Yuri V. Khotyaintsev +4

Despite heat flux's role in regulating energy conversion in collisionless plasmas, its properties and evolution in the magnetosheath downstream of the Earth's bow shock are scarcel…

physics.plasm-ph2026

Ion Temperature Anisotropy Limits from Magnetic Curvature Scattering in Magnetotail Reconnection Jets

Louis Richard, Anton V. Artemyev, Cecilia Norgren +3

In collisionless plasmas, relaxation of the deviations of ion velocity distribution functions (VDFs) from local thermodynamic equilibrium occurs through particle interactions with…

physics.plasm-ph2025

Non-Maxwellianity of Ion Velocity Distributions in the Earth's Magnetosheath

Louis Richard, Sergio Servidio, Ida Svenningsson +6

We analyze the deviations from local thermodynamic equilibrium (LTE) of the ion velocity distribution function (iVDF) in collisionless plasma turbulence. Using data from the Magnet…

physics.space-ph2024

Extent of the Magnetotail of Venus From the Solar Orbiter, Parker Solar Probe and BepiColombo Flybys

Niklas J. T. Edberg, David J. Andrews, J. Jordi Boldú +20

We analyze data from multiple flybys by the Solar Orbiter, BepiColombo, and Parker Solar Probe (PSP) missions to study the interaction between Venus' plasma environment and the sol…

cs.AI2024

AI in Space for Scientific Missions: Strategies for Minimizing Neural-Network Model Upload

Jonah Ekelund, Ricardo Vinuesa, Yuri Khotyaintsev +3

Artificial Intelligence (AI) has the potential to revolutionize space exploration by delegating several spacecraft decisions to an onboard AI instead of relying on ground control a…