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First-Principles Study of the Magnetic and Electronic Structure of Ndb4

Authors :
Pengyan Tao
Jiangjiang Ma
Shujing Li
Xiaohong Shao
Baotian Wang
Source :
Materials; Volume 16; Issue 7; Pages: 2627
Publication Year :
2022
Publisher :
Elsevier BV, 2022.

Abstract

Due to their magnetic and physical properties, rare earth magnetic borides have been applied to a variety of critical technologies. In particular, rare earth tetraborides are more abundant as frustrated antiferromagnets. Here, the atomic structures, magnetic structures, and electronic structures of NdB4 have been studied by first-principle calculations. The ground state magnetic structure of NdB4 is determined. Moreover, the small energy difference between different magnetic structures means that there may be more than one magnetic structure that coexist. One can glean from the electronic structure of the magnetic ground state that the d orbital of Nd is strongly hybridized with the p orbital of B, and the f electron of Nd is highly localized. The computational results reveal the complexity of the magnetic structure and provide a theoretical basis for studying the magnetic ground state of NdB4.

Details

ISSN :
15565068
Database :
OpenAIRE
Journal :
SSRN Electronic Journal
Accession number :
edsair.doi.dedup.....fdc3756a3ec67e67fb3032375459772f