The interplay of electronic, magnetic and structural properties of GdB<sub>6</sub> from first principles
ORAL
Abstract
Gadolinium hexaboride (GdB6) is a well-known field emitter material that has been investigated for more than three decades. We perform a systematical density-functional theory (DFT) study of GdB6 by using the generalized-gradient approximation and considering the electron interaction parameter U. The basic structural and electronic properties are carefully revised, as well as a strong U-value dependence in determining the antiferromagnetic (AFM) magnetic structures of Gd 4f electronic states. We found a small U (0~3eV) showing the most consistent experimental ground-state properties, which gives rise to a magnetic structure with a ground state of C-AFM and a second stable E-AFM. Moreover, we find the distortion modes of boron octahedron play an important role in the interaction between spin and lattice structures in this system. These results will deepen our understanding of the boron-based correlated rare earth compounds.
*the National Natural Science Foundation of China (Grants No. 51672171, No.51861145315, and No. 51911530124), the National Key Basic Research Program of China (Grant No. 2015CB921600), Work at the University of Missouri was supported by the U.S. Department of Energy, Award No. DE-SC0019114.
Presenters
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Shaowen Xu
- Physics Department, International Centre of Quantum and Molecular Structures, Shanghai University, Shanghai, 200444 China