A New Mechanism for ULF Wave Modulation of Energetic Electron Precipitation

Fuente: arXiv
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Main Authors: Olifer, L., Zhou, D., Patel, M., Mann, I. R., Hudson, M. K., Degeling, A. W., Heinke, C. O., Sivakoff, G. R., Kale, A., Kasahara, S., Yokota, S., Keika, K., Hori, T., Mitani, T., Takashima, T., Kasahara, Y., Matsuda, S., Shinbori, A., Matsuoka, A., Teramoto, M., Yamamoto, K., Shinohara, I., Miyoshi, Y.
Format: Preprint
Published: 2025
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author Olifer, L.
Zhou, D.
Patel, M.
Mann, I. R.
Hudson, M. K.
Degeling, A. W.
Heinke, C. O.
Sivakoff, G. R.
Kale, A.
Kasahara, S.
Yokota, S.
Keika, K.
Hori, T.
Mitani, T.
Takashima, T.
Kasahara, Y.
Matsuda, S.
Shinbori, A.
Matsuoka, A.
Teramoto, M.
Yamamoto, K.
Shinohara, I.
Miyoshi, Y.
author_facet Olifer, L.
Zhou, D.
Patel, M.
Mann, I. R.
Hudson, M. K.
Degeling, A. W.
Heinke, C. O.
Sivakoff, G. R.
Kale, A.
Kasahara, S.
Yokota, S.
Keika, K.
Hori, T.
Mitani, T.
Takashima, T.
Kasahara, Y.
Matsuda, S.
Shinbori, A.
Matsuoka, A.
Teramoto, M.
Yamamoto, K.
Shinohara, I.
Miyoshi, Y.
contents The May 2024 geomagnetic superstorm provided the opportunity to explore how strong wave-particle interactions affect energetic electron precipitation under intense driving. Using coordinated measurements from a balloon-borne Timepix-based X-ray detector, ground-based riometers and magnetometers, and Arase satellite observations, we identified quasi-periodic bursts of energetic electron precipitation coincident with Pc5 ultra low frequency (ULF) wave oscillations. Arase satellite data revealed energy-dispersed trapped energetic electron flux modulations in the 'seed' energy range, indicating that trapped electron flux was likely modulated by ULF waves. This letter reveals that these flux enhancements surpassed the Kennel-Petschek (K-P) limit, creating intense chorus waves and driving periodic electron precipitation. Drift-dispersion analysis traced these modulations back to a source in the post-noon magnetospheric sector, matching balloon and ground-based measurements. Here, we propose a novel indirect ULF wave-driven mechanism for modulated energetic electron precipitation, whereby periodic modulations of `seed' electron fluxes enhance electron losses.
format Preprint
id arxiv_https___arxiv_org_abs_2509_13286
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A New Mechanism for ULF Wave Modulation of Energetic Electron Precipitation
Olifer, L.
Zhou, D.
Patel, M.
Mann, I. R.
Hudson, M. K.
Degeling, A. W.
Heinke, C. O.
Sivakoff, G. R.
Kale, A.
Kasahara, S.
Yokota, S.
Keika, K.
Hori, T.
Mitani, T.
Takashima, T.
Kasahara, Y.
Matsuda, S.
Shinbori, A.
Matsuoka, A.
Teramoto, M.
Yamamoto, K.
Shinohara, I.
Miyoshi, Y.
Space Physics
The May 2024 geomagnetic superstorm provided the opportunity to explore how strong wave-particle interactions affect energetic electron precipitation under intense driving. Using coordinated measurements from a balloon-borne Timepix-based X-ray detector, ground-based riometers and magnetometers, and Arase satellite observations, we identified quasi-periodic bursts of energetic electron precipitation coincident with Pc5 ultra low frequency (ULF) wave oscillations. Arase satellite data revealed energy-dispersed trapped energetic electron flux modulations in the 'seed' energy range, indicating that trapped electron flux was likely modulated by ULF waves. This letter reveals that these flux enhancements surpassed the Kennel-Petschek (K-P) limit, creating intense chorus waves and driving periodic electron precipitation. Drift-dispersion analysis traced these modulations back to a source in the post-noon magnetospheric sector, matching balloon and ground-based measurements. Here, we propose a novel indirect ULF wave-driven mechanism for modulated energetic electron precipitation, whereby periodic modulations of `seed' electron fluxes enhance electron losses.
title A New Mechanism for ULF Wave Modulation of Energetic Electron Precipitation
topic Space Physics
url https://arxiv.org/abs/2509.13286