Polar faculae (PF) are bright, small-scale structures measuring a few seconds of arc, populating the polar zones at latitudes >50°. They possess magnetic fields ranging from 150 to 1,700 Gauss and largely constitute the polar magnetic fields. Where and how their fields are generated in the solar interior remain open questions. Using measurements of PF rotation rates, we show that their anchor depths probably lie in subsurface layers at radius r/R⊙= 0:94-1.00. If so, the PF fields are possibly generated by a local dynamo in a subsurface shear layer extending to r/R⊙>0:94
Context: Observations indicate that the `quiet' solar photosphere outside active regions contains co...
Solar magnetic fields, produced in the interor and extending all the way into the interplanetary spa...
Context. Observations of cool stars reveal dark spot-like features on their surfaces. These starspot...
Context.Faculae at the poles of the Sun, or polar faculae (PFe), take part in the solar magnetic cyc...
Faculae on the polar caps of the Sun, in short polar faculae (PFe), are investigated. They take part...
. We present high-resolution studies of the solar polar magnetic fields near sunspot maximum in 1989...
Context. Polar magnetic fields play a key role in the solar magnetic cycle and they are the source o...
This review describes observations of the polar magnetic fields, models for the cyclical formation a...
The solar dynamo is the action of flows inside the Sun to maintain its magnetic field against Ohmic ...
Aims. This study extends earlier investigations on faculae and their small-scale magnetic fields nea...
Plage regions are patches of concentrated magnetic field in the Sun’s atmosphere where hot coronal l...
We develop a three-dimensional kinematic self-sustaining model of the solar dynamo in which the polo...
We investigate the polar magnetic fields near sunspot minimum using high-resolution videomagnetograp...
Recent numerical work in helioseismology has shown that a periodically varying subsurface magnetic f...
Mean field dynamo theory deals with various mean quantities and does not directly throw any light on...
Context: Observations indicate that the `quiet' solar photosphere outside active regions contains co...
Solar magnetic fields, produced in the interor and extending all the way into the interplanetary spa...
Context. Observations of cool stars reveal dark spot-like features on their surfaces. These starspot...
Context.Faculae at the poles of the Sun, or polar faculae (PFe), take part in the solar magnetic cyc...
Faculae on the polar caps of the Sun, in short polar faculae (PFe), are investigated. They take part...
. We present high-resolution studies of the solar polar magnetic fields near sunspot maximum in 1989...
Context. Polar magnetic fields play a key role in the solar magnetic cycle and they are the source o...
This review describes observations of the polar magnetic fields, models for the cyclical formation a...
The solar dynamo is the action of flows inside the Sun to maintain its magnetic field against Ohmic ...
Aims. This study extends earlier investigations on faculae and their small-scale magnetic fields nea...
Plage regions are patches of concentrated magnetic field in the Sun’s atmosphere where hot coronal l...
We develop a three-dimensional kinematic self-sustaining model of the solar dynamo in which the polo...
We investigate the polar magnetic fields near sunspot minimum using high-resolution videomagnetograp...
Recent numerical work in helioseismology has shown that a periodically varying subsurface magnetic f...
Mean field dynamo theory deals with various mean quantities and does not directly throw any light on...
Context: Observations indicate that the `quiet' solar photosphere outside active regions contains co...
Solar magnetic fields, produced in the interor and extending all the way into the interplanetary spa...
Context. Observations of cool stars reveal dark spot-like features on their surfaces. These starspot...