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Orbital Reconstruction and Covalent Bonding at an Oxide Interface
Oleh:
Chakhalian, J.
;
Freeland, J. W.
;
Habermeier, H.U.
;
Cristiani, G.
;
Khaliullin, G.
;
Veenendaal, M. van
;
Keimer, B.
Jenis:
Article from Bulletin/Magazine
Dalam koleksi:
SCIENCE (keterangan: ada di Proquest) vol. 318 no. 5853 (Nov. 2007)
,
page 1114.
Ketersediaan
Perpustakaan FK
Nomor Panggil:
S01.K.2007.09
Non-tandon:
1 (dapat dipinjam: 0)
Tandon:
tidak ada
Lihat Detail Induk
Isi artikel
Orbital reconstructions and covalent bonding must be considered as important factors in the rational design of oxide heterostructures with engineered physical properties. We have investigated the interface between high-temperature superconducting (Y,Ca)Ba2Cu3O7 and metallic La0.67Ca0.33MnO3 by resonant x-ray spectroscopy. A charge of about –0.2 electron is transferred from Mn to Cu ions across the interface and induces a major reconstruction of the orbital occupation and orbital symmetry in the interfacial CuO2 layers. In particular, the Cu d3z2–r2 orbital, which is fully occupied and electronically inactive in the bulk, is partially occupied at the interface. Supported by exact-diagonalization calculations, these data indicate the formation of a strong chemical bond between Cu and Mn atoms across the interface. Orbital reconstructions and associated covalent bonding are thus important factors in determining the physical properties of oxide heterostructures.
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