arXiv · 2510.24274
Alpha Core-Beam Origin in Low-$β$ Solar Wind Plasma: Insights from Fully Kinetic Simulation
Abstract
In-situ observations of the fast solar wind in the inner-heliosphere show that minor ions and ion sub-populations often exhibit distinct drift velocities. Both alpha particles and proton beams stream at speeds that rarely exceed the local Alfvén speed relative to the core protons, suggesting the presence of instabilities that constrain their maximum drift. We aim to propose a mechanism that generates an alpha-particle beam through non-linear Landau damping, primarily driven by the relative super-Alfvénic drift between protons and alpha particles. To investigate this process, we perform one-dimensional, fully kinetic particle-in-cell simulations of a non-equilibrium multi-species plasma, complemented by its linear theory to validate the model during the linear phase. Our results provide clear evidence that the system evolves by producing an alpha-particle beam, thereby suggesting a local mechanism for alpha-beam generation via non-linear Landau damping.
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Luca Pezzini, Fabio Bacchini, Andrei N. Zhukov, Giuseppe Arrò, Rodrigo A. Lopez. 2025-10-28. Alpha Core-Beam Origin in Low-$β$ Solar Wind Plasma: Insights from Fully Kinetic Simulation. https://arxiv.org/abs/2510.24274
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