Context: Measurements of the sunspots area, of the magnetic field in the interplanetary medium, and of the heliospheric current sheet (HCS) position, reveal a possible north-south (N-S) asymmetry in the magnetic field of the Sun. This asymmetry could cause the bending of the HCS of the order of 5–10 deg in the southward direction, and it appears to be a recurrent characteristic of the Sun during the minima of solar activity. Aims: We study the N-S asymmetry as inferred from measurements of the deflection of polar coronal hole jets when they propagate throughout the corona. Methods: Since the corona is an environment where the magnetic pressure is greater than the kinetic pressure (β ≪ 1), we can assume that the magnetic field contr...
Abstract In this paper, we evaluate the heliospheric current sheet (HCS) north–south asymmetry usin...
An analysis of interplanetary magnetic field (IMF) and plasma data taken near 1 AU during solar act...
The solar polar fields reverse because magnetic flux from decaying sunspots moves towards the poles,...
Context. Measurements of the sunspots area, of the magnetic field in the interplanetary medium, and ...
A displacement of the heliospheric current sheet (HCS) south of the helioequator by approx.10deg was...
Abstract Aims: The heliospheric current sheet (HCS) has been observed to be southward shifted in th...
Aims. The heliospheric current sheet (HCS) has been observed to be southward shifted in the late dec...
AbstractData of the solar and interplanetary parameters (IMF magnitude B, Solar wind speed V, Proton...
We measured the flows of magnetic elements on the Sun at very high latitudes by analyzing magnetic i...
Abstract This thesis studies the structure and evolution of the large scale heliospheric magnetic fi...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
We statistically investigated features of the field-aligned current (FAC) distribution in plasma she...
Context. Observations of reconnection jets in the solar corona are emerging as a possible diagnostic...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
Abstract In this paper, we evaluate the heliospheric current sheet (HCS) north–south asymmetry usin...
An analysis of interplanetary magnetic field (IMF) and plasma data taken near 1 AU during solar act...
The solar polar fields reverse because magnetic flux from decaying sunspots moves towards the poles,...
Context. Measurements of the sunspots area, of the magnetic field in the interplanetary medium, and ...
A displacement of the heliospheric current sheet (HCS) south of the helioequator by approx.10deg was...
Abstract Aims: The heliospheric current sheet (HCS) has been observed to be southward shifted in th...
Aims. The heliospheric current sheet (HCS) has been observed to be southward shifted in the late dec...
AbstractData of the solar and interplanetary parameters (IMF magnitude B, Solar wind speed V, Proton...
We measured the flows of magnetic elements on the Sun at very high latitudes by analyzing magnetic i...
Abstract This thesis studies the structure and evolution of the large scale heliospheric magnetic fi...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
We statistically investigated features of the field-aligned current (FAC) distribution in plasma she...
Context. Observations of reconnection jets in the solar corona are emerging as a possible diagnostic...
The solar-wind magnetosphere interaction primarily occurs at altitudes where the dipole component of...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
Abstract In this paper, we evaluate the heliospheric current sheet (HCS) north–south asymmetry usin...
An analysis of interplanetary magnetic field (IMF) and plasma data taken near 1 AU during solar act...
The solar polar fields reverse because magnetic flux from decaying sunspots moves towards the poles,...