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J.-P. Delaboudiniere R.A. Stern A. Maucherat F. Portier-Fozzani W.M. Neupert J.B. Gurman R.C. Catura J.R. Lemen L. Shing G.E. Artzner J. Brunaud A.H. Gabriel D.J. Michels J.D. Moses B. Au K.P. Dere R.A. Howard R. Kreplin J.M. Defise C. Jamar P. Rochus J.P. Chauvineau J.P. Marioge F. Clette P. Cugnon E.L. Van Dessel 《Advances in Space Research (includes Cospar's Information Bulletin, Space Research Today)》1997,20(12):2231-2237
The SOHO (SOlar and Heliospheric Observatory) satellite was launched on December 2nd 1995. After arriving at the Earth-Sun (L1) Lagrangian point on February 14th 1996, it began to continuously observe the Sun. As one of the instruments onboard SOHO, the EIT (Extreme ultraviolet Imaging Telescope) images the Sun's corona in 4 EUV wavelengths. The He II filter at 304 Å images the chromosphere and the base of the transition region at a temperature of 5 − 8 × 104 K; the Fe IX–X filter at 171 Å images the corona at a temperature of 1.3 × 106 K; the Fe XII filter at 195 Å images the quiet corona outside coronal holes at a temperature of 1.6 × 106 K; and the Fe XV filter at 284 Å images active regions with a temperature of 2.0 × 106 K. About 5000 images have been obtained up to the present. In this paper, we describe also some aspects of the telescope and the detector performance for application in the observations. Images and movies of all the wavelengths allow a look at different phenomena present in the Sun's corona, and in particular, magnetic field reconnection. 相似文献
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We are discussing methods of stereoscopic 3D reconstruction of coronal loops structures. In our most sophisticated method
we fit loops observed with SOHO/EIT to a set of shape parameters including the internal twist of the loops field lines. We
define this twist as the number of turns of the field line around a torus axis between the footpoints of the loops. Twist
numbers of the order 0–2 are observed. We observe the emergence of an Active Region with twisted loops which detwist as they
expand. The same correlation between detwisting and expansion is observed with filaments in relation to CME formations. On
longer time scale, loops seem to accumulate twist, perhaps due to differential rotation. Rapid losses of twist temporarily
correlate with flares. From our analysis, we expect that the internal twist of coronal structures will play an important role
for the space weather forecast.
This revised version was published online in August 2006 with corrections to the Cover Date. 相似文献
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