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- W2283210577 abstract "This chapter describes the current status of the computational nanomaterial design: the room-temperature spintronics applications in 3d-transition-metal-doped dilute magnetic semiconductors (DMS), d 0 ferromagnetism in nontransition-metal and defect-doped DMS, and rare-earth-metal-doped semiconductors including the efficient (linear and circular-polarized) light-emitting diodes based upon the codoping methods. On the basis of ab initio electronic structure calculations, we propose the ferromagnetic mechanisms and magnetic-control methods, and design the spintronics materials by controlling the magnetic interactions upon the impurities codoping and the electric-field gating. The multihierarchical simulations of ab initio calculations for magnetism and the Monte Carlo simulations provide accurate estimation of Curie temperatures ( T C ) of DMS. Using the self-organized spinodal nanodecomposition in two-dimensional (2D) and three-dimensional (3D) crystal growth conditions, we design 2D Konbu phases and 3D Dairiseki phases, which are promising candidates for the room-temperature spintronics applications with the high-blocking temperature in the nanomagnets and high-efficiency luminescent centers. We can expect high- T C Dairiseki phase in DMS by the 3D spinodal nanodecomposition, where the ferromagnetic percolation path increases dramatically upon the spinodal nanodecomposition if the concentration of the transition metal is above the percolation limit. The comparisons of our design and predictions with the available experimental data are presented." @default.
- W2283210577 created "2016-06-24" @default.
- W2283210577 creator A5030134062 @default.
- W2283210577 creator A5040546892 @default.
- W2283210577 creator A5042108607 @default.
- W2283210577 creator A5046968370 @default.
- W2283210577 creator A5078003161 @default.
- W2283210577 date "2016-01-01" @default.
- W2283210577 modified "2023-10-12" @default.
- W2283210577 title "Computational nanomaterials design for nanospintronics" @default.
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