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Identifying the Growth Phase of Magnetic Reconnection Using Pressure-Strain Interaction

  • M. Hasan Barbhuiya
  • , Paul A. Cassak
  • , Alex Chasapis
  • , Michael A. Shay
  • , Giulia Cozzani
  • , Alessandro Retinò
  • West Virginia University
  • University of Colorado Boulder
  • The Bartol Research Institute
  • University of Helsinki

Research output: Contribution to journalArticlepeer-review

4 Citations (Scopus)

Abstract

Magnetic reconnection often initiates abruptly and then rapidly progresses to a nonlinear quasi-steady state. While satellites frequently detect reconnection events, ascertaining whether the system has achieved steady-state or is still evolving in time remains challenging. Here, we propose that the relatively rapid opening of the reconnection separatrices within the electron diffusion region serves as an indicator of the growth phase of reconnection. The opening of the separatrices is produced by electron flows diverging away from the neutral line downstream of the X-line and flowing around a dipolarization front. This flow pattern leads to characteristic spatial structures in the electron pressure-strain interaction that could be a useful indicator for the growth phase of a reconnection event. We employ two-dimensional particle-in-cell numerical simulations of anti-parallel magnetic reconnection to validate this prediction. We find that the signature discussed here, alongside traditional reconnection indicators, can serve as a marker of the growth phase. This signature is potentially accessible using multi-spacecraft single-point measurements, such as with NASA's Magnetospheric Multiscale satellites in Earth's magnetotail. Applications to other settings where reconnection occurs are also discussed.

Original languageEnglish
Article numbere2024JA033446
JournalJournal of Geophysical Research: Space Physics
Volume130
Issue number3
DOIs
Publication statusPublished - 1 Mar 2025

Keywords

  • growth phase of reconnection
  • magnetic reconnection phases
  • pressure-strain interaction

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