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◆ Physics of Plasmas2026-02-01· Physics

Plasma precursor solitons driven by finite-sized charged sources: Effects of source alignment, charge, geometry, magnetic fields, and electron–ion temperature ratios

Vikram Dharodi, Krishan Kumar, Abhijit Sen, Earl Scime

原始摘要(英文原文)· Original abstract
We investigate precursor soliton dynamics driven by finite-sized charged sources in a two-dimensional plasma using two-dimensional three-velocity particle-in-cell simulations with OSIRIS. The study examines how source geometry, charge density, vertical alignment, and external magnetic fields influence soliton formation, structure, and coherence. A single finite line source generates forward-propagating solitons with trailing wakes, while the precursors generated by two vertically aligned sources interact nonlinearly in a non-elastic manner, forming bow- or crescent-shaped fronts. An external magnetic field aligned with the dual-source motion suppresses transverse expansion, eliminating bow- or crescent-shaped fronts and producing narrow, axially elongated, field-aligned solitons with enhanced longitudinal coherence. Unequal source-to-plasma charge ratios induce asymmetric precursor solitons with tilted fronts and uneven downstream structures. Increasing source charge enhances soliton amplitude and propagation distance, whereas low electron-to-ion temperature ratios strengthen Landau damping and reduce coherence. Systematic variations in source shape—including triangular and V-shaped profiles—reveal that the number and orientation of leading slopes govern whether solitons appear one-sided, dual-sided, symmetric, or asymmetric. Scalability tests confirm predictable dependence on the ion-acoustic speed, and simulations under low-Earth-orbit conditions reveal stationary (“pinned”) solitons. These results provide critical insights into how source configuration, plasma parameters, magnetic effects, and non-elastic interactions collectively shape nonlinear wakefields and debris–plasma interactions in laboratory and space plasmas.
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Plasma precursor solitons driven by finite-sized charged sources: Effects of source alignment, charge, geometry, magnetic fields, and electron–ion temperature ratios — 科研速览 Science Skim