We address the question of whether there is a possibility of an interplanetary magnetic field reaching Venus' surface by magnetic diffusion across the ionosphere. We present a model calculation, estimate the magnetic diffusion time at Venus, and find out that the typical diffusion timescale is in a range between 12 and 54 h, depending on the solar activity and the ionospheric magnetic field condition. The magnetic field can thus permeate Venus' surface and even its interior when the solar wind is stationary (i.e., no magnetic field reversal) on the timescale of half a day to several days
We investigate the characteristics of interplanetary magnetic field (IMF) draping in the Venusian ma...
The solar wind interaction with the non-magnetic Venerean ionospheric obstacle is unique. Ionospheri...
Plasma and magnetic field measurements made onboard the Venus Express on June 1, 2006, are analyzed ...
We address the question of whether there is a possibility of an interplanetary magnetic field reachi...
We address the question of whether there is a possibility of an interplanetary magnetic field reachi...
We address the question of whether there is a possibility of an interplanetary magnetic field reach...
Observations from the Pioneer Venus Orbiter magnetometer suggest that a large-scale magnetic field i...
Today, the earth's instrinsic magnetic field prevents the streaming solar wind plasma from directly ...
The behavior of the ionospheric magnetic fields and ionospheric plasma of the dayside ionospheres of...
Magnetometer measurements on the Pioneer Venus Orbiter (PVO) have shown that Venus is a non-magnetic...
Venus represents the prototype for a class of objects whose interaction with the solar wind is chara...
Strong ultraviolet radiation from the Sun ionizes the upper atmosphere of Venus, creating a dense i...
We present a statistical study on the interaction between interplanetary coronal mass ejections (ICM...
We present a statistical study on the interaction between interplanetary coronal mass ejections (ICM...
The current work investigates the Venusian solar-wind-induced magnetosphere at a high spatial resolu...
We investigate the characteristics of interplanetary magnetic field (IMF) draping in the Venusian ma...
The solar wind interaction with the non-magnetic Venerean ionospheric obstacle is unique. Ionospheri...
Plasma and magnetic field measurements made onboard the Venus Express on June 1, 2006, are analyzed ...
We address the question of whether there is a possibility of an interplanetary magnetic field reachi...
We address the question of whether there is a possibility of an interplanetary magnetic field reachi...
We address the question of whether there is a possibility of an interplanetary magnetic field reach...
Observations from the Pioneer Venus Orbiter magnetometer suggest that a large-scale magnetic field i...
Today, the earth's instrinsic magnetic field prevents the streaming solar wind plasma from directly ...
The behavior of the ionospheric magnetic fields and ionospheric plasma of the dayside ionospheres of...
Magnetometer measurements on the Pioneer Venus Orbiter (PVO) have shown that Venus is a non-magnetic...
Venus represents the prototype for a class of objects whose interaction with the solar wind is chara...
Strong ultraviolet radiation from the Sun ionizes the upper atmosphere of Venus, creating a dense i...
We present a statistical study on the interaction between interplanetary coronal mass ejections (ICM...
We present a statistical study on the interaction between interplanetary coronal mass ejections (ICM...
The current work investigates the Venusian solar-wind-induced magnetosphere at a high spatial resolu...
We investigate the characteristics of interplanetary magnetic field (IMF) draping in the Venusian ma...
The solar wind interaction with the non-magnetic Venerean ionospheric obstacle is unique. Ionospheri...
Plasma and magnetic field measurements made onboard the Venus Express on June 1, 2006, are analyzed ...