NASA NTRS · 19780022080
Interplanetary magnetic holes: Theory
Abstract
Magnetic holes in the interplanetary medium are explained as stationary, non-propagating, equilibrium structures in which there are field-aligned enhancements of the plasma density and/or temperature. Magnetic anti-holes are considered to be associated with depressions in the plasma pressure. In this model, the observed changes in the magnetic field intensity and direction are due to diamagnetic currents that are carried by ions which drift in a sheath as the result of gradients in the magnetic field and in the plasma pressure within the sheath. The thickness of the sheaths considered is approximately a few ion Larmor radii. An electric field is normal to the magnetic field in the sheath. Solutions of Vlasov's equation and Maxwell's equations are presented which account for several types of magnetic holes, including null-sheets, that were observed.
Keep this discovery
Explore connections, maps & timelines
Burlaga, L. F., Lemaire, J. F.. 1978-07-01. Interplanetary magnetic holes: Theory. https://ntrs.nasa.gov/citations/19780022080
Cite the original work for its findings. Save a collection to share your selection of sources.