Winterlik Jürgen, Fecher Gerhard H, Jenkins Catherine A, Felser Claudia, Mühle Claus, Doll Klaus, Jansen Martin, Sandratskii Leonid M, Kübler Jürgen
Institut für Anorganische und Analytische Chemie, Johannes Gutenberg-Universität, D-55099 Mainz, Germany.
Phys Rev Lett. 2009 Jan 9;102(1):016401. doi: 10.1103/PhysRevLett.102.016401. Epub 2009 Jan 5.
We report on theoretical investigations of the exotic magnetism in rubidium sesquioxide Rb4O6, a model correlated system with an open 2p shell. Experimental investigations indicated that Rb4O6 is a magnetically frustrated insulator. The frustration is explained here by electronic structure calculations that incorporate the correlation between the oxygen 2p electrons and deal with the mixed-valent oxygen. This leads to a physical picture where the symmetry is reduced because one third of the oxygen in Rb4O6 is nonmagnetic while the remaining two thirds assemble in antiferromagnetic arrangements. A degenerate, insulating ground state with a large number of frustrated noncollinear magnetic configurations is confidently deduced from the theoretical point of view. These findings demonstrate in general the importance of electron-electron correlations in open-shell p-electron systems.
我们报告了对倍半氧化铷Rb4O6中奇异磁性的理论研究,Rb4O6是一个具有开放2p壳层的典型关联体系。实验研究表明,Rb4O6是一种磁阻挫绝缘体。本文通过电子结构计算来解释这种阻挫现象,该计算考虑了氧2p电子之间的关联,并处理了混合价态的氧。这导致了一种物理图像,即对称性降低,因为Rb4O6中三分之一的氧是非磁性的,而其余三分之二则以反铁磁排列聚集。从理论角度可以可靠地推导出具有大量阻挫非共线磁构型的简并绝缘基态。这些发现总体上证明了开壳层p电子体系中电子-电子关联的重要性。