Spectral Properties and Energy Injection in Mercury's Magnetotail Current Sheet

Fuente: arXiv
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Main Authors: Li, Xinmin, Dong, Chuanfei, Wang, Liang, Aizawa, Sae, Hadid, Lina Z., Zhang, Chi, Zhou, Hongyang, Slavin, James A., Gao, Jiawei, Stumpo, Mirko, Zhang, Wei
Format: Preprint
Published: 2025
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author Li, Xinmin
Dong, Chuanfei
Wang, Liang
Aizawa, Sae
Hadid, Lina Z.
Zhang, Chi
Zhou, Hongyang
Slavin, James A.
Gao, Jiawei
Stumpo, Mirko
Zhang, Wei
author_facet Li, Xinmin
Dong, Chuanfei
Wang, Liang
Aizawa, Sae
Hadid, Lina Z.
Zhang, Chi
Zhou, Hongyang
Slavin, James A.
Gao, Jiawei
Stumpo, Mirko
Zhang, Wei
contents Mercury's magnetotail hosts a thin and highly dynamic current sheet (CS), where magnetic reconnection and strong fluctuations frequently occur. Here, we statistically analyze magnetic field power spectra across 370 magnetotail CSs observed by MESSENGER. About 20% of the events are quasi-laminar, showing single power-law spectra, whereas 80% are turbulent, exhibiting a spectral break separating inertial and kinetic ranges. A dawn-dusk asymmetry is identified: inertial-range slopes are systematically shallower on the dawnside, whereas kinetic-range slopes are steeper, indicating more developed turbulence there, consistent with the higher occurrence of reconnection-related processes on the dawnside. Component analysis shows that the transverse components, orthogonal to the tail-aligned principal field (BX), display shallow slopes near -1 in the inertial range, suggesting energy injection at ion scales rather than a classical inertial range. These results demonstrate that Mercury's unique plasma environment fundamentally reshapes the initiation of turbulence and the redistribution of energy in the magnetotail.
format Preprint
id arxiv_https___arxiv_org_abs_2601_02393
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Spectral Properties and Energy Injection in Mercury's Magnetotail Current Sheet
Li, Xinmin
Dong, Chuanfei
Wang, Liang
Aizawa, Sae
Hadid, Lina Z.
Zhang, Chi
Zhou, Hongyang
Slavin, James A.
Gao, Jiawei
Stumpo, Mirko
Zhang, Wei
Space Physics
Earth and Planetary Astrophysics
Plasma Physics
Mercury's magnetotail hosts a thin and highly dynamic current sheet (CS), where magnetic reconnection and strong fluctuations frequently occur. Here, we statistically analyze magnetic field power spectra across 370 magnetotail CSs observed by MESSENGER. About 20% of the events are quasi-laminar, showing single power-law spectra, whereas 80% are turbulent, exhibiting a spectral break separating inertial and kinetic ranges. A dawn-dusk asymmetry is identified: inertial-range slopes are systematically shallower on the dawnside, whereas kinetic-range slopes are steeper, indicating more developed turbulence there, consistent with the higher occurrence of reconnection-related processes on the dawnside. Component analysis shows that the transverse components, orthogonal to the tail-aligned principal field (BX), display shallow slopes near -1 in the inertial range, suggesting energy injection at ion scales rather than a classical inertial range. These results demonstrate that Mercury's unique plasma environment fundamentally reshapes the initiation of turbulence and the redistribution of energy in the magnetotail.
title Spectral Properties and Energy Injection in Mercury's Magnetotail Current Sheet
topic Space Physics
Earth and Planetary Astrophysics
Plasma Physics
url https://arxiv.org/abs/2601.02393