We measured the flows of magnetic elements on the Sun at very high latitudes by analyzing magnetic images from the Helioseismic and Magnetic Imager (HMI) on the NASA Solar Dynamics Observatory (SDO) Mission. Magnetic maps constructed using a fixed, and north ]south symmetric, meridional flow profile give weaker than observed polar fields in the North and stronger than observed polar fields in the South during the decline of Cycle 23 and rise of Cycle 24. Our measurements of the meridional flow at high latitudes indicate systematic north ]south differences. There was a strong flow in the North while the flow in the South was weaker. With these results, we have a possible solution to the polar field asymmetry. The weaker flow in the South sho...
The nondipolar portions of the Earth's main magnetic field constitute substantial differences betwee...
The distribution of magnetic fields of positive and negative polarities over the surface of the Sun ...
We simulate the evolution of the Sun’s large-scale magnetic field during solar cycle 21, including t...
The cause of the low and extended minimum in solar activity between Sunspot Cycles 23 and 24 was the...
The meridional circulation at high latitudes is crucial to the buildup and reversal of the Sun’s pol...
We have measured the meridional motions of magnetic elements observed in the photosphere over sunspo...
The faster meridional flow that preceded the solar cycle 23/24 minimum is thought to have led to wea...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
High-resolution magnetograms of the solar polar region were used for the study of the polar magnetic...
The meridional flow speed determines the strength of the Sun s polar fields in both surface flux tra...
We investigate the polar magnetic fields near sunspot minimum using high-resolution videomagnetograp...
We measure the axisymmetric transport of magnetic flux on the Sun by cross-correlating narrow strips...
We simulate the transport of magnetic flux in the Sun s photosphere by an evolving pattern of cellul...
Aims. Sunspot activity is often hemispherically asymmetric, and during the Maunder minimum, activity...
The nondipolar portions of the Earth's main magnetic field constitute substantial differences betwee...
The distribution of magnetic fields of positive and negative polarities over the surface of the Sun ...
We simulate the evolution of the Sun’s large-scale magnetic field during solar cycle 21, including t...
The cause of the low and extended minimum in solar activity between Sunspot Cycles 23 and 24 was the...
The meridional circulation at high latitudes is crucial to the buildup and reversal of the Sun’s pol...
We have measured the meridional motions of magnetic elements observed in the photosphere over sunspo...
The faster meridional flow that preceded the solar cycle 23/24 minimum is thought to have led to wea...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
Aims. Hemispheric irregularities of solar magnetic activity is a well-observed phenomenon, the origi...
High-resolution magnetograms of the solar polar region were used for the study of the polar magnetic...
The meridional flow speed determines the strength of the Sun s polar fields in both surface flux tra...
We investigate the polar magnetic fields near sunspot minimum using high-resolution videomagnetograp...
We measure the axisymmetric transport of magnetic flux on the Sun by cross-correlating narrow strips...
We simulate the transport of magnetic flux in the Sun s photosphere by an evolving pattern of cellul...
Aims. Sunspot activity is often hemispherically asymmetric, and during the Maunder minimum, activity...
The nondipolar portions of the Earth's main magnetic field constitute substantial differences betwee...
The distribution of magnetic fields of positive and negative polarities over the surface of the Sun ...
We simulate the evolution of the Sun’s large-scale magnetic field during solar cycle 21, including t...