Observation of a Knotted Electron Diffusion Region in Earth's Magnetotail Reconnection

Fuente: arXiv
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Main Authors: Li, Xinmin, Dong, Chuanfei, Ji, Hantao, Zhang, Chi, Wang, Liang, Giles, Barbara, Zhou, Hongyang, Chen, Rui, Qi, Yi
Format: Preprint
Published: 2025
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_version_ 1866911615675269120
author Li, Xinmin
Dong, Chuanfei
Ji, Hantao
Zhang, Chi
Wang, Liang
Giles, Barbara
Zhou, Hongyang
Chen, Rui
Qi, Yi
author_facet Li, Xinmin
Dong, Chuanfei
Ji, Hantao
Zhang, Chi
Wang, Liang
Giles, Barbara
Zhou, Hongyang
Chen, Rui
Qi, Yi
contents Magnetic reconnection is a fundamental plasma process that alters the magnetic field topology and releases magnetic energy. Most numerical simulations and spacecraft observations assume a two-dimensional diffusion region, with the electron diffusion region (EDR) embedded in the same plane as the ion diffusion region (IDR) and a uniform guide field throughout. Using observations from Magnetospheric Multiscale (MMS) mission, we report a non-coplanar, knotted EDR in Earth's magnetotail current sheet. The reconnection plane of the knotted EDR deviates by approximately 38° from that of the IDR, with the guide field exhibiting both a 38° directional shift and a twofold increase in amplitude. Moreover, the Hall magnetic field is bipolar in the EDR but quadrupolar in the IDR, indicating different Hall current structures at electron and ion scales. These observations highlight the importance of three-dimensional effects and illustrate the complexity of multiscale coupling between the EDR and IDR during reconnection studies.1
format Preprint
id arxiv_https___arxiv_org_abs_2507_10842
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Observation of a Knotted Electron Diffusion Region in Earth's Magnetotail Reconnection
Li, Xinmin
Dong, Chuanfei
Ji, Hantao
Zhang, Chi
Wang, Liang
Giles, Barbara
Zhou, Hongyang
Chen, Rui
Qi, Yi
Space Physics
Earth and Planetary Astrophysics
Plasma Physics
Magnetic reconnection is a fundamental plasma process that alters the magnetic field topology and releases magnetic energy. Most numerical simulations and spacecraft observations assume a two-dimensional diffusion region, with the electron diffusion region (EDR) embedded in the same plane as the ion diffusion region (IDR) and a uniform guide field throughout. Using observations from Magnetospheric Multiscale (MMS) mission, we report a non-coplanar, knotted EDR in Earth's magnetotail current sheet. The reconnection plane of the knotted EDR deviates by approximately 38° from that of the IDR, with the guide field exhibiting both a 38° directional shift and a twofold increase in amplitude. Moreover, the Hall magnetic field is bipolar in the EDR but quadrupolar in the IDR, indicating different Hall current structures at electron and ion scales. These observations highlight the importance of three-dimensional effects and illustrate the complexity of multiscale coupling between the EDR and IDR during reconnection studies.1
title Observation of a Knotted Electron Diffusion Region in Earth's Magnetotail Reconnection
topic Space Physics
Earth and Planetary Astrophysics
Plasma Physics
url https://arxiv.org/abs/2507.10842