Half-metallic ferromagnetism and structural stability of zincblende phases of the transition-metal chalcogenides
Half-metallic ferromagnetism and structural stability of zincblende phases of the transition-metal chalcogenides
An accurate density-functional method is used to study systematically half-metallic ferromagnetism and stability of zincblende phases of 3d-transition-metal chalcogenides. The zincblende CrTe, CrSe, and VTe phases are found to be excellent half-metallic ferromagnets with large half-metallic gaps (up to 0.88 eV). They are mechanically stable and approximately 0.31-0.53 eV per formula unit higher in total energy than the corresponding nickel-arsenide ground-state phases, and therefore would be grown epitaxially in the form of films and layers thick enough for spintronic applications.
Bang-Gui Liu、Ya-Qiong Xu、D G Pettifor、Wen-Hui Xie
物理学材料科学晶体学
Bang-Gui Liu,Ya-Qiong Xu,D G Pettifor,Wen-Hui Xie.Half-metallic ferromagnetism and structural stability of zincblende phases of the transition-metal chalcogenides[EB/OL].(2003-08-23)[2025-08-02].https://arxiv.org/abs/cond-mat/0308463.点此复制
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