Context. It is possible to detect and track coronal bright points (CBPs) in Solar Dynamics Observatory/Atmospheric Imaging Assembly (SDO/AIA) images. A combination of high resolution and high cadence provides a wealth of data that can be used to determine velocity flows on the solar surface with very high accuracy. Aims. We derived a very accurate solar rotation profile and investigated meridional flows, torsional oscillations, and horizontal Reynolds stress based on ≈6 months of SDO/AIA data. Methods. We used a segmentation algorithm to detect CBPs in SDO/AIA images. We also used invariance of the solar rotation profile with central meridian distance (CMD) to determine the height of CBPs in the 19.3 nm channel. Results. The bes...
© ESO, 2017. Context. The present paper discusses results of a statistical study of the characterist...
Full-disc solar images obtained with the Extreme Ultraviolet Imaging Telescope (EIT) on board the So...
We have developed a method to map large-scale horizontal velocity fields in the solar photosphere. ...
Context. Coronal bright points (CBP) are ubiquitous small brightenings in the solar corona associate...
In this paper we present preliminary results on the solar differential rotation measured tracing co...
Aims. We precisely determine the solar rotation velocity during most of the 23rd solar cycle, in the...
International audienceContext. Large-scale flows in the Sun play an important role in the dynamo pro...
Coronal Bright Points are one of many Solar manifestations that provide scientists evi-dences of its...
Context. Large-scale flows in the Sun play an important role in the dynamo process linked to the sol...
Context. We compare solar differential rotation of subphotospheric layers derived from local heliose...
Information on the rotation rate of the corona, and its variation over latitude and solar cycle, is ...
Context. The measurement of the Sun’s surface motions with a high spatial and temporal res...
Aims. Our aim is to identify and trace the X-ray bright points (XBPs) over the disc and use them as ...
Context. Helioseismology has revealed that the angular velocity of the Sun increases with depth in t...
Coronal bright points (CBPs) are useful features that can be used to calculate solar rotation even w...
© ESO, 2017. Context. The present paper discusses results of a statistical study of the characterist...
Full-disc solar images obtained with the Extreme Ultraviolet Imaging Telescope (EIT) on board the So...
We have developed a method to map large-scale horizontal velocity fields in the solar photosphere. ...
Context. Coronal bright points (CBP) are ubiquitous small brightenings in the solar corona associate...
In this paper we present preliminary results on the solar differential rotation measured tracing co...
Aims. We precisely determine the solar rotation velocity during most of the 23rd solar cycle, in the...
International audienceContext. Large-scale flows in the Sun play an important role in the dynamo pro...
Coronal Bright Points are one of many Solar manifestations that provide scientists evi-dences of its...
Context. Large-scale flows in the Sun play an important role in the dynamo process linked to the sol...
Context. We compare solar differential rotation of subphotospheric layers derived from local heliose...
Information on the rotation rate of the corona, and its variation over latitude and solar cycle, is ...
Context. The measurement of the Sun’s surface motions with a high spatial and temporal res...
Aims. Our aim is to identify and trace the X-ray bright points (XBPs) over the disc and use them as ...
Context. Helioseismology has revealed that the angular velocity of the Sun increases with depth in t...
Coronal bright points (CBPs) are useful features that can be used to calculate solar rotation even w...
© ESO, 2017. Context. The present paper discusses results of a statistical study of the characterist...
Full-disc solar images obtained with the Extreme Ultraviolet Imaging Telescope (EIT) on board the So...
We have developed a method to map large-scale horizontal velocity fields in the solar photosphere. ...