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Kinetic interaction of cold and hot protons with an oblique EMIC wave near the dayside reconnecting magnetopause
  • +21
  • Sergio Toledo-Redondo,
  • Justin Hao Lee,
  • Sarah Kimberly Vines,
  • Drew L. Turner,
  • Robert Colby Allen,
  • Mats André,
  • Scott A. Boardsen,
  • James L Burch,
  • Richard E. Denton,
  • Huishan Fu,
  • Stephen A. Fuselier,
  • Daniel J Gershman,
  • Barbara L. Giles,
  • Daniel Bruce Graham,
  • Naritoshi Kitamura,
  • Yuri V. Khotyaintsev,
  • Benoit Lavraud,
  • Olivier Le Contel,
  • Wenya Li,
  • Thomas Earle Moore,
  • Enrique A Navarro,
  • Jorge A. Portí,
  • Alfonso Salinas,
  • Adolfo F. Vinas
Sergio Toledo-Redondo
Department of Electromagnetism and Electronics, University of Murcia

Corresponding Author:[email protected]

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Justin Hao Lee
The Aerospace Corporation
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Sarah Kimberly Vines
Johns Hopkins University Applied Physics Laboratory
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Drew L. Turner
The Johns Hopkins University Applied Physics Laboratory
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Robert Colby Allen
Johns Hopkins University Applied Physics Laboratory
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Mats André
Swedish Institute of Space Physics
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Scott A. Boardsen
NASA/GSFC-GPHI
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James L Burch
Southwest Research Institute
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Richard E. Denton
Dartmouth College
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Huishan Fu
Beihang University
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Stephen A. Fuselier
Southwest Research Institute
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Daniel J Gershman
NASA Goddard Space Flight Center
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Barbara L. Giles
NASA Goddard Space Flight Center
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Daniel Bruce Graham
Swedish Institute of Space Physics
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Naritoshi Kitamura
The University of Tokyo
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Yuri V. Khotyaintsev
Swedish Institute of Space Physics
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Benoit Lavraud
Institut de Recherche en Astrophysique et Planetologie - CNRS
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Olivier Le Contel
CNRS/Ecole Polytechnique/Sorbonne Université/Université Paris-Saclay/Obser. de Paris
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Wenya Li
State Key Laboratory of Space Weather
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Thomas Earle Moore
Third Rock Research
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Enrique A Navarro
University of Valencia
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Jorge A. Portí
University of Granada
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Alfonso Salinas
University of Granada
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Adolfo F. Vinas
NASA/Goddard Flight Space Center
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Abstract

We report observations of the ion dynamics inside an Alfven branch wave that propagates near the reconnecting dayside magnetopause. The measured frequency, wave normal angle and polarization are within 1% with the predictions of a dispersion solver, and indicate that the wave is an electromagnetic ion cyclotron wave with very oblique wave vector. The magnetospheric plasma contains hot protons (keV), cold protons (eV), plus some heavy ions. The cold protons follow the magnetic field fluctuations and remain frozen-in, while the hot protons are at the limit of magnetization. The cold proton velocity fluctuations contribute to balance the Hall term in Ohm’s law, allowing the wave polarization to be highly-elliptical and right-handed, a necessary condition for propagation at oblique wave normal angles. The dispersion solver indicates that increasing the cold proton density facilitates generation and propagation of these waves at oblique angles, as it occurs for the observed wave.