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Main Authors: Keilbach, Duncan, Heidrich-Meisner, Verena, Berger, Lars, Wimmer-Schweingruber, Robert F.
Format: Preprint
Published: 2025
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Online Access:https://arxiv.org/abs/2503.10936
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author Keilbach, Duncan
Heidrich-Meisner, Verena
Berger, Lars
Wimmer-Schweingruber, Robert F.
author_facet Keilbach, Duncan
Heidrich-Meisner, Verena
Berger, Lars
Wimmer-Schweingruber, Robert F.
contents Freshly injected interstellar Pickup Ions (PUIs) are expected to exhibit a simple, torus-shaped velocity distribution function. The PUI velocity in the solar wind frame depends on the velocity of the interstellar neutral (ISN) population at the pick-up position. In this study, we compare PUI velocity distributions measured by the PLasma And SupraThermal Ion Composition (PLASTIC) instrument over the full orbit of Solar TErestrial RElations Observatory-Ahead (STEREO-A) directly. We define a new position-independent velocity measure for PUIs that takes the local direction of the interstellar neutral inflow into account. The resulting new PUI velocity measure corrects thereby for the position-dependent contribution of the ISN velocity. Pitch-angle distributions are then analysed depending on the magnetic-field azimuthal angle for different orbital positions and different values of the PUI velocity measure. The new PUI velocity measure shows an approximately constant cut-off over the complete orbit of STEREO-A. A torus signature is visible everywhere. Therein, a broadening of the torus signature outside the focusing cone and crescent regions and for lower velocity measure observed. In addition, we illustrate the symmetry between the primary and secondary ISN trajectory in the vicinity of the focusing cone. A torus signature associated with freshly injected PUIs is visible over the complete orbit of STEREO-A with increased density in the focusing cone. At least remnants of a torus signature remain for smaller values of the PUI velocity measure. The new velocity measure also prepares for PUI studies with Solar Orbiter.
format Preprint
id arxiv_https___arxiv_org_abs_2503_10936
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Three dimensional He+ pickup ion velocity distribution functions observed with STEREO-A PLASTIC
Keilbach, Duncan
Heidrich-Meisner, Verena
Berger, Lars
Wimmer-Schweingruber, Robert F.
Solar and Stellar Astrophysics
Space Physics
Freshly injected interstellar Pickup Ions (PUIs) are expected to exhibit a simple, torus-shaped velocity distribution function. The PUI velocity in the solar wind frame depends on the velocity of the interstellar neutral (ISN) population at the pick-up position. In this study, we compare PUI velocity distributions measured by the PLasma And SupraThermal Ion Composition (PLASTIC) instrument over the full orbit of Solar TErestrial RElations Observatory-Ahead (STEREO-A) directly. We define a new position-independent velocity measure for PUIs that takes the local direction of the interstellar neutral inflow into account. The resulting new PUI velocity measure corrects thereby for the position-dependent contribution of the ISN velocity. Pitch-angle distributions are then analysed depending on the magnetic-field azimuthal angle for different orbital positions and different values of the PUI velocity measure. The new PUI velocity measure shows an approximately constant cut-off over the complete orbit of STEREO-A. A torus signature is visible everywhere. Therein, a broadening of the torus signature outside the focusing cone and crescent regions and for lower velocity measure observed. In addition, we illustrate the symmetry between the primary and secondary ISN trajectory in the vicinity of the focusing cone. A torus signature associated with freshly injected PUIs is visible over the complete orbit of STEREO-A with increased density in the focusing cone. At least remnants of a torus signature remain for smaller values of the PUI velocity measure. The new velocity measure also prepares for PUI studies with Solar Orbiter.
title Three dimensional He+ pickup ion velocity distribution functions observed with STEREO-A PLASTIC
topic Solar and Stellar Astrophysics
Space Physics
url https://arxiv.org/abs/2503.10936