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New mechanism of kinetic exchange interaction induced by strong magnetic anisotropy.


ABSTRACT: It is well known that the kinetic exchange interaction between single-occupied magnetic orbitals (s-s) is always antiferromagnetic, while between single- and double-occupied orbitals (s-d) is always ferromagnetic and much weaker. Here we show that the exchange interaction between strongly anisotropic doublets of lanthanides, actinides and transition metal ions with unquenched orbital momentum contains a new s-d kinetic contribution equal in strength with the s-s one. In non-collinear magnetic systems, this s-d kinetic mechanism can cause an overall ferromagnetic exchange interaction which can become very strong for transition metal ions. These findings are fully confirmed by DFT based analysis of exchange interaction in several Ln(3+) complexes.

SUBMITTER: Iwahara N 

PROVIDER: S-EPMC4838874 | biostudies-other | 2016 Apr

REPOSITORIES: biostudies-other

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New mechanism of kinetic exchange interaction induced by strong magnetic anisotropy.

Iwahara Naoya N   Chibotaru Liviu F LF  

Scientific reports 20160421


It is well known that the kinetic exchange interaction between single-occupied magnetic orbitals (s-s) is always antiferromagnetic, while between single- and double-occupied orbitals (s-d) is always ferromagnetic and much weaker. Here we show that the exchange interaction between strongly anisotropic doublets of lanthanides, actinides and transition metal ions with unquenched orbital momentum contains a new s-d kinetic contribution equal in strength with the s-s one. In non-collinear magnetic sy  ...[more]

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