Javascript must be enabled to continue!
Shock-induced magnetic reconnection in the Venusian magnetotail
View through CrossRef
Venus lacks an intrinsic magnetic field, and its induced magnetosphere differs significantly from Earth's stable dipolar magnetic field. Although magnetic reconnection was detected in the near Venusian magnetotail, the drivers and impacts of magnetic reconnection at Venus remain poorly understood. In this study, we present the global magnetohydrodynamic simulation of Venusian magnetotail reconnection. The results reproduce characteristic reconnection signatures in the Venusian magnetotail and delineate the formation of three-dimensional magnetic structures consistent with reconnection topologies. We demonstrate that reconnection is triggered by the compression of the draped interplanetary magnetic field following an interplanetary shock, a mechanism previously associated with terrestrial dynamics. We further explore the roles of velocity, density and magnetic field of the solar wind in this process. This work highlights new insights into magnetic reconnection in unmagnetized plasma environments.
Title: Shock-induced magnetic reconnection in the Venusian magnetotail
Description:
Venus lacks an intrinsic magnetic field, and its induced magnetosphere differs significantly from Earth's stable dipolar magnetic field.
Although magnetic reconnection was detected in the near Venusian magnetotail, the drivers and impacts of magnetic reconnection at Venus remain poorly understood.
In this study, we present the global magnetohydrodynamic simulation of Venusian magnetotail reconnection.
The results reproduce characteristic reconnection signatures in the Venusian magnetotail and delineate the formation of three-dimensional magnetic structures consistent with reconnection topologies.
We demonstrate that reconnection is triggered by the compression of the draped interplanetary magnetic field following an interplanetary shock, a mechanism previously associated with terrestrial dynamics.
We further explore the roles of velocity, density and magnetic field of the solar wind in this process.
This work highlights new insights into magnetic reconnection in unmagnetized plasma environments.
Related Results
The Case for a Mission to Return Cloud Particles from the Lower Atmosphere of Venus
The Case for a Mission to Return Cloud Particles from the Lower Atmosphere of Venus
<p>The possibility of life in the lower Venusian atmosphere has been given serious scientific consideration for many decades (Sagan, 1961; Cockell, 1999; Grinspoon, 1...
Duskward displacement of plasmoids and reconnection in the magnetotail
Duskward displacement of plasmoids and reconnection in the magnetotail
Abstract
Magnetic reconnection in the near-Earth magnetotail is responsible for explosive releases of energy during auroral breakups. This near-tail reconnection was previo...
Why does the magnetotail reconnection have significantly varying strength of fluctuation?
Why does the magnetotail reconnection have significantly varying strength of fluctuation?
Magnetic reconnection in the Earth’s magnetosphere is usually manifested
as a turbulent state in which the large amplitude fluctuations disrupt
the main reconnection layer, while i...
Observations of Electron Secondary Reconnection in Magnetic Reconnection Front
Observations of Electron Secondary Reconnection in Magnetic Reconnection Front
Magnetic reconnectio­n, a fundamental plasma process transforming magnetic field energy into particle energy, is ubiquitous in space and responsible for many explosive phe...
Kronian Magnetospheric Reconnection Statistics Across Cassini's Lifetime
Kronian Magnetospheric Reconnection Statistics Across Cassini's Lifetime
Magnetic reconnection is a fundamental physical process in planetary
magnetospheres, in which plasma can be exchanged between the solar wind
and a planetary magnetosphere, and mate...
Magnetic Reconnection as a Dissipation Mechanism for Magnetic Switchbacks
Magnetic Reconnection as a Dissipation Mechanism for Magnetic Switchbacks
Context: Magnetic switchbacks are localised polarity reversals in the radial component of the heliospheric magnetic field. Observations from Parker Solar Probe (PSP) have shown tha...
Turbulent magnetic reconnection in the solar wind
Turbulent magnetic reconnection in the solar wind
Turbulent magnetic reconnection was observed in the magnetotail and the magnetopause. In turbulent magnetic reconnection, the diffusion region is filled with a number of filamentar...
Measurement of jet evolution and electron energy spectrum during the process of laser-driven magnetic reconnection
Measurement of jet evolution and electron energy spectrum during the process of laser-driven magnetic reconnection
Magnetic reconnection (MR) is a universal physical process in plasma, in which the stored magnetic energy is converted into high-velocity flows and energetic particles. It is belie...

