Exchange energy dominated by large orbital spin-currents in δ-Pu
classification
❄️ cond-mat.str-el
cond-mat.mtrl-sci
keywords
exchangeenergyaccordancedeltaorbitalshellspin-currentsactinides
read the original abstract
The electronic structure of the anomalous $\delta$-phase of Pu is analyzed by a general and exact reformulation of the exchange energy of the $f$-shell. It is found that the dominating contribution to the exchange energy is a polarization of orbital spin-currents that preserves the time reversal symmetry, hence a non-magnetic solution in accordance with experiments. The analysis brings a unifying picture of the role of exchange in the $5f$-shell with its relatively strong spin-orbit coupling. The results are in good accordance with recent measurements of the branching ratio for the $d$ to $f$ transition in the actinides.
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