We study the dependence of the electric field at the magnetopause on the parameters of the solar wind for the southward interplanetary magnetic field. For the magnetic reconnection region, we use the Hall MHD model with Bohm-type resistivity in the diffusion region. In this case, the spatial change in resistivity is modeled by the Gaussian function. The reconnection rate was found as a decreasing function of the plasma beta parameter, which was used to match the reconnection region with the dayside magnetosheath parameters determined from a numerical MHD model of the solar wind flow around the magnetopause. The magnetosheath solution gives radial profiles of the ratio of the normal velocity to the local Alfvén speed. At the magnetopause, this ratio should be equal to the reconnection rate calculated in the diffusion region. This condition gives the magnetic field strength and electric field at the magnetopause. © The Author(s), under exclusive license to Springer Nature Switzerland AG 2026.
Original languageEnglish
Title of host publicationProblems of Geocosmos—2024 (ICS 2024)
PublisherSpringer Nature
Pages485-503
Number of pages19
DOIs
StatePublished - 2026
EventProblems of Geocosmos—2024 - Петергоф, ул. Ульяновская д.1, НИИ Физики им. В.А.Фока, Санкт-Петербург, Russian Federation
Duration: 22 Apr 202426 Apr 2024
Conference number: 15
https://events.spbu.ru/events/geocosmos-2024
https://events.spbu.ru/events/geocosmos-2024?ysclid=lxlrfdjmhj251872220
https://equinocs.springernature.com/service/ics

Publication series

NameSpringer Proceedings in Earth and Environmental Sciences
VolumePart F1503

Conference

ConferenceProblems of Geocosmos—2024
Country/TerritoryRussian Federation
CityСанкт-Петербург
Period22/04/2426/04/24
Internet address

    Research areas

  • Hall MHD model, Magnetic reconnection, Magnetopause, Magnetosheath, Solar wind flow

ID: 150510537