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Energy Flux Densities in Electron-only Magnetic Reconnection in Space Plasma

  • Z. Z. Chen*
  • , T. Y. Wang
  • , J. Yu
  • , J. Wang
  • , Y. D. Ye
  • , H. S. Fu
  • , J. B. Cao
  • , J. Cui
  • , H. Y. Man
  • , Y. C. Jiang
  • *Corresponding author for this work
  • Ministry of Industry and Information Technology
  • Yunnan University
  • Sun Yat-Sen University
  • Macau University of Science and Technology

Research output: Contribution to journalArticlepeer-review

Abstract

Electron-only magnetic reconnection, a novel form of magnetic reconnection recently discovered in plasma turbulence, exhibits distinct features from the well-studied standard magnetic reconnection with ion coupling. Our study investigates its energy partition features by utilizing in situ measurements from the Magnetospheric Multiscale mission. Electron enthalpy flux exhibits a strong linear relationship with electron velocity. The spatial distributions of electron kinetic energy and enthalpy fluxes are influenced by the asymmetric effects and guide fields in a similar manner to how the spatial distributions of electron velocity are affected. The guide field enhances Poynting flux to a magnitude that rivals, or even surpasses, electron enthalpy flux, while also deflects it toward the outflow direction. These findings impact the understanding of energy partition in magnetic reconnection.

Original languageEnglish
Article number45
JournalAstrophysical Journal, Supplement Series
Volume281
Issue number2
DOIs
StatePublished - 1 Dec 2025

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