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Antiferromagnetic and structural transitions in the superoxide KO2 from first principles: A 2p-electron system with spin-orbital-lattice coupling SCIE SCOPUS

Title
Antiferromagnetic and structural transitions in the superoxide KO2 from first principles: A 2p-electron system with spin-orbital-lattice coupling
Authors
Kim, MinjaeKim, Beom HyunChoi, Hong ChulMin, BI
Date Issued
2010-03
Publisher
AMER PHYSICAL SOC
Abstract
KO2 exhibits concomitant antiferromagnetic (AFM) and structural transitions, both of which originate from the open-shell 2p electrons of O-2(-) molecules. The structural transition is accompanied by the coherent tilting of O-2(-) molecular axes. The interplay among the spin-orbital-lattice degrees of freedom in KO2 is investigated by employing the first-principles electronic structure theory and the kinetic-exchange interaction scheme. We have shown that the insulating nature of the high-symmetry phase of KO2 at high temperature (T) arises from the combined effect of the spin-orbit coupling and the strong Coulomb correlation of O 2p electrons. In contrast, for the low-symmetry phase of KO2 at low T with the tilted O-2(-) molecular axes, the band gap and the orbital ordering are driven by the combined effects of the crystal field and the strong Coulomb correlation. We have verified that the emergence of the O 2p ferro-orbital ordering is essential to achieve the observed AFM structure for KO2.
URI
https://oasis.postech.ac.kr/handle/2014.oak/12245
DOI
10.1103/PHYSREVB.81.100409
ISSN
1098-0121
Article Type
Article
Citation
PHYSICAL REVIEW B, vol. 81, no. 10, 2010-03
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