Dayside merging and cusp geometry
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- Type
- article
- Published
- 1979-03-01
- Cited by
- 676
- References
- 48
- OpenAlex
- https://openalex.org/W1964344434
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:119490745
Keywords
Magnetosheath, Magnetopause, Physics, Interplanetary magnetic field, Geometry
References
- The Configuration of the Magnetosphere
- The magnetospheric boundary layers: A geometrically explicit model
- Magnetospheric convection induced by the positive and negative Z components of the interplanetary magnetic field: Quantitative analysis using polar cap magnetic records
- The frontside boundary layer of the magnetosphere and the problem of reconnection
- Solar wind‐magnetosphere coupling
- Heos 2 plasma observations in the distant polar magnetosphere: The plasma mantle
- Explorer 33 entry layer observations
- Interplanetary magnetic-field direction and high-latitude ionospheric currents
- On the existence of a second standing shock wave attached to the magnetosphere
- Plasma and Magnetic Field Characteristics of the Distant Polar Cusp near Local Noon: The Entry Layer
- Influence of the interplanetary magnetic field on the occurrence and thickness of the plasma mantle
- Electric field topology near the dayside magnetopause
- High-latitude electric fields and the three-dimensional interaction between the interplanetary and terrestrial magnetic fields
- Merging of magnetic fields with field-aligned plasma flow components
- Magnetic merging in a collisionless plasma
- The formation of the plasma sheet resulting from plasma mantle dynamics
- Two basic modes of interaction between the solar wind and the magnetosphere
- The magnetic field on the magnetospheric boundary from laboratory simulation data
- Field-aligned currents, convection electric fields, and ULF-ELF waves in the cusp
- Comments on a paper by J. P. Heppner, ‘Polar cap electric field distributions related to interplanetary magnetic field direction’
Cited by
- Solar Wind Influence on Magnetotail Configuration and Dynamics
- Global Geometry of Merging at the Dayside Magnetopause
- Solar wind control of magnetospheric configuration
- Dependence of the polar-cap geometry on the IMF (interplanetary magnetic field)
- Characteristics of isolated high-latitude aurora
- Comparison of various cusp models with high- and low-resolution observations
- Topology and convection of a northward interplanetary magnetic field reconnection event
- Magnetic reconnection at the Earth´s magnetopause: CLUSTER spacecraft observations at different scales
- Energetic Magnetosheath Ions Connected to the Earth's Bow Shock: Possible Source of CEPs
- Observations of Magnetic Reconnection and Plasma Dynamics in Mercury's Magnetosphere.
- A model of FTE footprints in the polar cap. [flux transfer event]
- Electrodynamic Coupling in the Solar Wind-Magnetosphere-Ionosphere System ∗
- MESSENGER observations of Mercury's dayside magnetosphere under extreme solar wind conditions
- Double bursts inside a poleward‐moving auroral form in the cusp
- Dipole tilt angle effect on magnetic reconnection locations on the magnetopause
- Auroral and magnetic variations in the polar cusp and cleft — Signatures of magnetopause boundary-layer dynamics
- Investigation of the dayside boundary region of the magnetosphere
- Solar Wind Control of the Polar CAP Voltage
- The Interplanetary Magnetic Field and Solar Wind Driven Magnetospheric Reconfiguration
- The Analysis Phase of MITHRAS
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