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February 8, 2026The Astrophysical Journal0 citationsOpen Access

3D MHD Simulations of Coronal Loops Heated via Magnetic Braiding. II. Automatic Detection of Reconnection Outflows and Statistical Analysis of Their Properties

GCG. CozzoPTPaola TestaJMJ. Martinez-Sykora

Key Points

  • The research aims to investigate reconnecting outflows in numerical simulations and their relevance to nanoflare heating.
  • Developed an algorithm for automatic detection of reconnection outflows in 3D MHD simulations.
  • Applied the algorithm to a stratified coronal loop model heated by magnetic reconnection.
  • Analyzed the statistical properties of jets produced at reconnection sites over one solar hour.
  • Identified reconnection outflows resembling observed nanojets in solar observations.
  • Statistical analysis showed correlations between the properties of outflows and nanoflare characteristics.
  • Outflows were generated consistently during intermittent magnetic energy release.

Abstract

Abstract Recent observations of fast and bursty “nanojets” suggest novel diagnostics of nanoflare heating in the solar corona. The aim of this work is to investigate the presence and properties of reconnection outflows, similar to observed nanojets, in numerical simulations, and explore their relationship with the nanoflare properties. This work explores their potential as diagnostics for nanoflare heating in observations. We developed an algorithm of Reconnection Outflows Automatic Detection in 3D MHD simulations of coronal loops. We applied the algorithm to a 3D MHD-stratified coronal loop model heated by magnetic reconnection and analyzed the statistical properties of the jets produced at reconnection sites, over about 1 solar hr. The magnetic structure is maintained at a high temperature and for an indefinite time by intermittent episodes of local magnetic energy release due to reconnection.

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Cite This Study

Cozzo et al. (2026) studied this question.

synapsesocial.com/papers/6988270a0fc35cd7a8845f18https://doi.org/10.3847/1538-4357/ae2fc3
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  1. 13D MHD Simulations of Coronal Loops Heated via Magnetic Braiding. I. Continuous Driving2026
  2. 2On the Complex Nature of Coronal Heating2025
  3. 3Self-Consistent Heating of the Magnetically Closed Solar Corona: Generation of Nanoflares, Thermodynamic Response of the Plasma and Observational Signatures2025
  4. 4Self-Consistent Heating of the Magnetically Closed Solar Corona: Generation of Nanoflares, Thermodynamic Response of the Plasma and Observational Signatures2025
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