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Local symmetry-driven interfacial magnetization and electronic states in (ZnO)n/(w-FeO)n superlattices.

Authors :
Gao, Jia-Xin
Ng, Yi Sheng
Cheng, Hao
Wang, Hui-Qiong
Lü, Tie-Yu
Zheng, Jin-Cheng
Source :
Physical Chemistry Chemical Physics (PCCP); 4/21/2024, Vol. 26 Issue 15, p12084-12096, 13p
Publication Year :
2024

Abstract

Superlattices constructed with the wide-band-gap semiconductor ZnO and magnetic oxide FeO, both in the wurtzite structure, have been investigated using spin-polarized first-principles calculations. The structural, electronic and magnetic properties of the (ZnO)<subscript>n</subscript>/(w-FeO)<subscript>n</subscript> superlattices were studied in great detail. Two different interfaces in the (ZnO)<subscript>n</subscript>/(w-FeO)<subscript>n</subscript> superlattices were identified and they showed very different magnetic and electronic properties. Local symmetry-driven interfacial magnetization and electronic states can arise from different Fe/Zn distributions at different interfaces or spin ordering of Fe in the superlattice. The local symmetry-driven interfacial magnetization and electronic states, originating either from different Fe/Zn distribution across interfaces I and II, or by spin ordering of Fe in the superlattice, can be identified. It was also found that, in the case of the ferromagnetic phase, the electrons are more delocalized for the majority spin but strongly localized for the minority spin, which resulted in interesting spin-dependent transport properties. Our results will pave the way for designing novel spin-dependent electronic devices through the construction of superlattices from semiconductors and multiferroics. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14639076
Volume :
26
Issue :
15
Database :
Complementary Index
Journal :
Physical Chemistry Chemical Physics (PCCP)
Publication Type :
Academic Journal
Accession number :
176656177
Full Text :
https://doi.org/10.1039/d4cp00481g