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High Excitation Rydberg Levels of Fe I from the ATMOS Solar Spectrum at 2.5 and 7 microns

Authors :
Schoenfeld, W. G
Chang, E. S
Geller, M
Johansson, S
Nave, G
Sauval, A. J
Grevesse, N
Source :
Astronomy and Astrophysics. 301
Publication Year :
1995
Publisher :
United States: NASA Center for Aerospace Information (CASI), 1995.

Abstract

The quadrupole-polarization theory has been applied to the 3d(sup 6)4S(D-6)4f and 5g subconfigurations of Fe I by a parametric fit, and the fitted parameters are used to predict levels in the 6g and 6h subconfigurations. Using the predicted values, we have computed the 4f-6g and 5g-6h transition arrays and made identifications in the ATMOS infrared solar spectrum. The newly identified 6g and 6h levels, based on ATMOS wavenumbers, are combined with the 5g levels and found to agree with the theoretical values with a root mean-squared-deviation of 0.042/ cm. Our approach yields a polarizability of 28.07 a(sub o, sup 2) and a quadrupole moment of 0.4360 +/- 0.0010 ea(sup 2, sub o) for Fe II, as well as an improved ionization potential of 63737.700 +/- 0.010/ cm for Fe I.

Subjects

Subjects :
Solar Physics

Details

Language :
English
Volume :
301
Database :
NASA Technical Reports
Journal :
Astronomy and Astrophysics
Publication Type :
Report
Accession number :
edsnas.19990100910
Document Type :
Report