A test of the spin-orbit sum rule for actinides using an ab-initio calculation
arXiv:cond-mat/0406433
Abstract
The expectation value of the angular part of the spin-orbit-coupling (SOC) operator and the branching ratio for the X-ray-absorption spectroscopy in -Pu, -U and face-centered-cubic (fcc) Th are calculated within the framework of the density-functional theory in combination with the local-spin-density approximation (LSDA), the generalized-gradient approximation (GGA) and the LDA+ method. The SOC contribution is calculated in terms of the first- and the second- variational schemes. A strong variation in the magnitudes of the calculated operator along the actinide series is found. The results show that the SOC sum rule for -Pu and -U is reasonably valid, whereas there is a sign mismatch for the case of fcc Th. The calculated branching ratios for the case without SOC in the valence shell strongly deviate from the statistical value.