Back to Search Start Over

Electron temperature and density relationships in coronal mass ejections

Authors :
Hammond, C. M
Phillips, J. L
Balogh, A
Source :
International Solar Wind 8 Conference.
Publication Year :
1995
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1995.

Abstract

We examine 10 coronal mass ejections from the in-ecliptic portion of the Ulysses mission. Five of these CMEs are magnetic clouds. In each case we observe an inverse relationship between electron temperature and density. For protons this relationship is less clear. Earlier work has shown a similar inverse relationship for electrons inside magnetic clouds and interpreted it to mean that the polytropic index governing the expansion of electrons is less than unity. This requires electrons to be heated as the CME expands. We offer an alternative view that the inverse relationship between electron temperature and density is caused by more rapid cooling of the denser plasma through collisions. More rapid cooling of denser plasma has been shown for 1 AU measurements in the solar wind. As evidence for this hypothesis we show that the denser plasma inside the CMEs tends to be more isotropic indicating a different history of collisions for the dense plasma. Thus, although the electron temperature inside CMEs consistently shows an inverse correlation with the density, this is not an indication of the polytropic index of the plasma but instead supports the idea of collisional modification of the electrons during their transit from the sun.

Subjects

Subjects :
Solar Physics

Details

Language :
English
Database :
NASA Technical Reports
Journal :
International Solar Wind 8 Conference
Publication Type :
Report
Accession number :
edsnas.19960021487
Document Type :
Report