The Electromagnetic Signature of Outward Propagating Ion-Scale Waves
Trevor A. Bowen, Stuart D. Bale, J. W. Bonnell, Davin Larson, Alfred, Mallet, Michael D. McManus, Forrest Mozer, Marc Pulupa, Ivan Vasko, and J. L., Verniero

TL;DR
This study uses Parker Solar Probe data to analyze both electric and magnetic fields of ion-scale waves, revealing their propagation directions and polarization states, which enhances understanding of wave-particle interactions in the solar wind.
Contribution
It provides a comprehensive analysis of ion-scale wave properties by combining electric and magnetic field measurements, distinguishing between different wave modes and their propagation directions.
Findings
Most waves propagate away from the sun in the solar wind frame.
Identification of both left-handed and right-handed polarized wave modes.
Electric field measurements confirm wave polarization and propagation characteristics.
Abstract
First results from the Parker Solar Probe (PSP) mission have revealed ubiquitous coherent ion-scale waves in the inner heliosphere, which are signatures of kinetic wave-particle interactions and fluid-scale instabilities. However, initial studies of the circularly polarized ion-scale waves observed by PSP have only thoroughly analyzed magnetic field signatures, precluding a determination of solar-wind frame propagation direction and intrinsic wave-polarization. A comprehensive determination of wave-properties requires measurements of both electric and magnetic fields. Here, we use full capabilities of the PSP/FIELDS instrument suite to measure both the electric and magnetic components of circularly polarized waves. Comparing spacecraft frame magnetic field measurements with the Doppler-shifted cold-plasma dispersion relation for parallel transverse waves constrains allowable plasma…
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