International audienceSolar oblateness is a fundamental parameter of the Sun, which provides indirect information on the inner rotation profile and on the distribution of matter. It also puts constraints on General Relativity. But this quantity is difficult to measure due to its very small value where the solar equator-to-pole radius difference is less than 10 milli-arcsecond (mas). Indeed, the measurements can be affected by magnetic activity and by instrumental effects linked to the space environment. The Helioseismic and Magnetic Imager (HMI) instrument onboard the Solar Dynamics Observatory (SDO) has produced accurate determinations of the solar oblateness from 2010 to 2015. The HMI measurements of the solar shape are obtained during sp...
When the BepiColombo spacecraft arrives at Mercury in late 2025, it will be able to measure the orbi...
We hereby present a review on solar oblateness measurements. By emphasizing historical data, we illu...
© The Author(s) 2011. This article is published with open access at Springerlink.com Abstract We des...
International audienceSolar oblateness is a fundamental parameter of the Sun, which provides indirec...
HMI (Helioseismic and Magnetic Imager) Science NuggetThe internal dynamics of the Sun is manifested ...
International audienceThe rotation of the Sun on itself involves a flatness of the Polar Regions. Th...
International audienceThe solar oblateness results from distortion processes due to several phenomen...
International audienceThe equator-to-pole radius difference (Δr=R eq−R pol) is a fundamental propert...
International audienceThe Sun is an almost perfect sphere. Its oblateness is about 10-5 of its radiu...
International audienceThe PICARD spacecraft was launched on June 15, 2010 with one of its sci- entif...
The Helioseismic and Magnetic Imager (HMI) instrument is a major component of NASA's Solar Dynamics ...
Based on historical records, the Sun's dimensions are temporally dependent. Until the recent past, v...
International audienceWe hereby present a review on solar oblateness measurements. By emphasizing hi...
When the BepiColombo spacecraft arrives at Mercury in late 2025, it will be able to measure the orbi...
We hereby present a review on solar oblateness measurements. By emphasizing historical data, we illu...
© The Author(s) 2011. This article is published with open access at Springerlink.com Abstract We des...
International audienceSolar oblateness is a fundamental parameter of the Sun, which provides indirec...
HMI (Helioseismic and Magnetic Imager) Science NuggetThe internal dynamics of the Sun is manifested ...
International audienceThe rotation of the Sun on itself involves a flatness of the Polar Regions. Th...
International audienceThe solar oblateness results from distortion processes due to several phenomen...
International audienceThe equator-to-pole radius difference (Δr=R eq−R pol) is a fundamental propert...
International audienceThe Sun is an almost perfect sphere. Its oblateness is about 10-5 of its radiu...
International audienceThe PICARD spacecraft was launched on June 15, 2010 with one of its sci- entif...
The Helioseismic and Magnetic Imager (HMI) instrument is a major component of NASA's Solar Dynamics ...
Based on historical records, the Sun's dimensions are temporally dependent. Until the recent past, v...
International audienceWe hereby present a review on solar oblateness measurements. By emphasizing hi...
When the BepiColombo spacecraft arrives at Mercury in late 2025, it will be able to measure the orbi...
We hereby present a review on solar oblateness measurements. By emphasizing historical data, we illu...
© The Author(s) 2011. This article is published with open access at Springerlink.com Abstract We des...