期刊论文详细信息
J
First Principles Computation of New Topological B 2 X 2 Zn ( X = Ir, Rh, Co) Compounds
article
Jack Howard1  Alexander Rodriguez1  Neel Haldolaarachchige2  Kalani Hettiarachchilage3 
[1] Department of Physics, Seton Hall University;Department of Physical Science, Bergen Community College;Department of Physics and Astronomy, College of Staten Island
关键词: Dirac point;    topological insulator;    topological crystalline insulator;    first-principles;    band structure;    phonon modes;    formation energy;    elastic properties;   
DOI  :  10.3390/j6010011
学科分类:社会科学、人文和艺术(综合)
来源: mdpi
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【 摘 要 】

Recent attempts at searching for new materials have revealed a large class of materials that show topological behaviors with unusual physical properties and potential applications leading to enthralling discoveries both theoretically and experimentally. We computationally predict new three-dimensional topological compounds of space group 139(I/4mmm). After conducting a full volume optimization process by allowing the rearrangement of atomic positions and lattice parameters, the first-principles calculation with a generalized gradient approximation is utilized to identify multiple Dirac-type crossings around X and P symmetric points near Fermi energy. Importantly, the band inversion at point P is recognized. Further, we investigate the compound for topological crystalline insulating behavior by conducting surface state calculation and by investigating gapping behavior by increasing lattice parameters. Additionally, we perform formation energy, elastic properties, and phonon modes calculations to verify the structural, mechanical, and dynamical stability of the compounds. Therefore, we suggest compounds for further investigation and experimental realization.

【 授权许可】

CC BY   

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