Title of article :
Impact of Mn–O–O–Mn superexchange pathways in a honeycomb lattice Mn oxide with small charge-transfer energy
Author/Authors :
Wadati، نويسنده , , H. and Kato، نويسنده , , K. and Wakisaka، نويسنده , , Y. and Sudayama، نويسنده , , T. and Hawthorn، نويسنده , , D.G. and Regier، نويسنده , , T.Z. and Onishi، نويسنده , , N. and Azuma، نويسنده , , M. and Shimakawa، نويسنده , , Y. and Mizokawa، نويسنده , , T. and Tanaka، نويسنده , , A. and Sawatzky، نويسنده , , G.A.، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 2013
Pages :
5
From page :
18
To page :
22
Abstract :
We investigated the electronic structure of layered Mn oxide Bi3Mn4O12(NO3) with a Mn honeycomb lattice by x-ray absorption spectroscopy and model calculations. The valence of Mn was determined to be 4 + with a small charge-transfer energy of ∼ 1 eV. The values of (J1, J2, J3, Jc, Jc1, and Jc2) obtained by unrestricted Hartree–Fock calculations on Mn 3d–O 2p lattice models show that intra-layer second and third neighbor superexchange interactions J2 and J3 as well as inter-layer superexchange interactions Jc, Jc1, and Jc2 are enhanced due to Mn–O–O–Mn pathways, which are activated by the smallness of charge-transfer energy. The present analysis indicates that the ferromagnetic Jc1 and antiferromagnetic Jc2 are responsible to the antiferromagnetic inter-layer coupling and that the intra-layer exchange interactions with the ferromagnetic J2 and antiferromagnetic J3 have no frustration effect.
Keywords :
Bi3Mn4O12(NO3) , X-ray absorption spectroscopy , frustration , Honeycomb lattice
Journal title :
Solid State Communications
Serial Year :
2013
Journal title :
Solid State Communications
Record number :
1794163
Link To Document :
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