Abstract
Various physical processes in association with magnetic reconnection occur over multiple scales from the microscopic to macroscopic scale lengths. This paper reviews multi-scale and cross-scale aspects of magnetic reconnection revealed in the near-Earth space beyond the general global-scale features and magnetospheric circulation organized by the Dungey Cycle. Significant and novel advancements recently reported, in particular, since the launch of the Magnetospheric Multi-scale mission (MMS), are highlighted being categorized into different locations with different magnetic topologies. These potentially paradigm-shifting findings include shock and foreshock transient driven reconnection, magnetosheath turbulent reconnection, flow shear driven reconnection, multiple X-line structures generated in the dayside/flankside/nightside magnetospheric current sheets, development and evolution of reconnection-driven structures such as flux transfer events, flux ropes, and dipolarization fronts, and their interactions with ambient plasmas. The paper emphasizes key aspects of kinetic processes leading to multi-scale structures and bringing large-scale impacts of magnetic reconnection as discovered in the geospace environment. These key features can be relevant and applicable to understanding other heliospheric and astrophysical systems.
Author supplied keywords
- Bow shock
- Current sheet flapping
- Dipolarization front
- Electron vortex
- Electron-only reconnection
- Flow shear
- Flow vortex
- Flux rope
- Flux transfer event
- Foreshock transient
- Kelvin-Helmholtz instability
- Kelvin-Helmholtz vortex
- Kelvin-Helmholtz wave
- Magnetic reconnection
- Magnetosheath
- Magnetospheric multi-scale mission
- Mid-latitude reconnection
- Solar wind transport
- Substorm
- Turbulent reconnection
Cite
CITATION STYLE
Hwang, K. J., Nakamura, R., Eastwood, J. P., Fuselier, S. A., Hasegawa, H., Nakamura, T., … Reiff, P. H. (2023, December 1). Cross-Scale Processes of Magnetic Reconnection. Space Science Reviews. Springer Science and Business Media B.V. https://doi.org/10.1007/s11214-023-01010-9
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.