Suprathermal Ion Energy spectra and Anisotropies near the Heliospheric Current Sheet crossing observed by the Parker Solar Probe during Encounter 7
M. I. Desai, D. G. Mitchell, D. J. McComas, J. F. Drake, T. Phan, J., R. Szalay, E. C. Roelof, J. Giacalone, M. E. Hill, E. R. Christian, N. A., Schwadron, R. L. McNutt Jr., M. E. Wiedenbeck, C. Joyce, C. M. S. Cohen, A., J. Davis, S. M. Krimigis, R. A. Leske, W. H. Matthaeus

TL;DR
This study reports on suprathermal ion observations near the heliospheric current sheet by the Parker Solar Probe, revealing unique spectral and anisotropic features that challenge existing acceleration models.
Contribution
It provides the first detailed measurements of suprathermal ions near the HCS at <0.1 au, highlighting new spectral behaviors and anisotropies that question current acceleration theories.
Findings
Heavy ions are less frequent during initial crossings.
Ion arrival times show no velocity dispersion.
He pitch-angle distributions track magnetic polarity reversals.
Abstract
We present observations of >10-100 keV/nucleon suprathermal (ST) H, He, O, and Fe ions associated with crossings of the heliospheric current sheet (HCS) at radial distances <0.1 au from the Sun. Our key findings are: 1) very few heavy ions are detected during the 1st full crossing, the heavy ion intensities are reduced during the 2nd partial crossing and peak just after the 2nd crossing; 2) ion arrival times exhibit no velocity dispersion; 3) He pitch-angle distributions track the magnetic field polarity reversal and show up to ~10:1 anti-sunward, field-aligned flows and beams closer to the HCS that become nearly isotropic further from the HCS; 4) the He spectrum steepens either side of the HCS and the He, O, and Fe spectra exhibit power-laws of the form ~E^4-6; and 5) maximum energies EX increase with the ion's charge-to-mass (Q/M) ratio as EX/EH proportional to [(QX/MX)]^alpha where…
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