activity
20242026
most citedReview of Machine Learning Models for Solar Energetic Particle Prediction

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

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astro-ph.SR2025

Intermittency in Voyager Magnetic Field Beyond the Heliosphere

L. Y. Khoo, G. Livadiotis, D. J. McComas +2

As the two Voyager spacecraft traveled beyond the heliosphere, they encountered a magnetic field environment that had never been observed before. Studies have attempted to characte…

astro-ph.SR2025

Transfer of Entropy between the Magnetic Field and Solar Energetic Particles during an Interplanetary Coronal Mass Ejection

M. E. Cuesta, G. Livadiotis, D. J. McComas +4

Thermodynamics of solar wind bulk plasma have been routinely measured and quantified, unlike those of solar energetic particles (SEPs), whose thermodynamic properties have remained…

physics.space-ph2025

High-Resolution Observations of Pickup Ion Mediated Shocks to 60 au

Bishwas L. Shrestha, David J. McComas, Eric J. Zirnstein +10

This study provides a detailed analysis of fourteen distant interplanetary shocks observed by the Solar Wind Around Pluto (SWAP) instrument onboard New Horizons. These shocks were…

astro-ph.SR2025

Radial dependence of ion fluences in the 2023 July 17 SEP event from Parker Solar Probe to STEREO and ACE

G. D. Muro, C. M. S Cohen, Z. Xu +18

In the latter moments of 17 July 2023, the solar active region 13363, near the southwestern face of the Sun, was undergoing considerable evolution, which resulted in a significant…

physics.space-ph2025

What defines stationarity in space plasmas

George Livadiotis, David J. McComas

Starting from the concept of entropy defect in thermodynamics, we construct the entropy formulation of space plasmas, and then use it to develop a measure of their stationarity. In…