HR: 0800h
AN: SH41B-1123    [Abstracts]
TI: Multi Aperture Coronal Spectrographic Technique for Simultaneous and Global Measurements of the Coronal Electron Temperature and its Bulk Flow Speed in the Low Solar Corona
AU: * Reginald, N L
EM: reginald@lasp680.gsfc.nasa.gov
AF: The Catholic University of America, 200 Hannan Hall Dept. of Physics 620 Michigan Avenue, N.E. , Washington, DC 20064 United States
AU: Davila, J M
EM: davila@lindsay.gsfc.nasa.gov
AF: The Goddard Space Flight Center, MC 612.1 Solar Physics Division, Greenbelt, MD 20771 United States
AU: St.Cyr, C C
EM: Chris.StCyr@nasa.gov
AF: The Goddard Space Flight Center, MC 612.1 Solar Physics Division, Greenbelt, MD 20771 United States
AB: We describe a spectrographic technique that allows for the simultaneous and global measurements of the coronal electron temperature and its bulk flow speed in the low solar corona. This information is obtained through the measurement of the K-coronal spectrum in the 3900-4400 Angstrom region, whose shape is determined by the electron temperature and its bulk flow speed. The Multi Aperture Coronal Spectrograph allows for the simultaneous measurement of the K-coronal spectra all around the low solar corona (less than 2 solar radii). Since most of the coronal temperature and solar wind speed measurements in the literature are due to ion-based techniques, it is very important to verify that the electron-based measurements compliment the ion-based measurements. This is particularly important owing to the fact that electrons are almost 2000 times lighter than the protons. And if the electron-based measurement do not compliment the proton-based measurement then it is reasonable to explore the possibilities of these two oppositely charged particles being subject to different physical mechanisms in the solar corona.
DE: 7507 Chromosphere
DE: 7509 Corona
DE: 7513 Coronal mass ejections (2101)
DE: 7519 Flares
DE: 7594 Instruments and techniques
SC: SPA-Solar and Heliospheric Physics [SH]
MN: Fall Meeting 2005