We demonstrate that giant current and high spin rectification ratios can be achieved in atomic carbon chain devices connected between two symmetric ferromagnetic zigzag-graphene-nanoribbon electrodes. The spin dependent transport simulation is carried out by density functional theory combined with the non-equilibrium Green's function method. It is found that the transverse symmetries of the electronic wave functions in the nanoribbons and the carbon chain are critical to the spin transport modes. In the parallel magnetization configuration of two electrodes, pure spin current is observed in both linear and nonlinear regions. However, in the antiparallel configuration, the spin-up (down) current is prohibited under the positive (negative) voltage bias, which results in a spin rectification ratio of order 10(4). When edge carbon atoms are substituted with boron atoms to suppress the edge magnetization in one of the electrodes, we obtain a diode with current rectification ratio over 10(6).
High performance current and spin diode of atomic carbon chain between transversely symmetric ribbon electrodes.
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作者:Dong Yao-Jun, Wang Xue-Feng, Yang Shuo-Wang, Wu Xue-Mei
| 期刊: | Scientific Reports | 影响因子: | 3.900 |
| 时间: | 2014 | 起止号: | 2014 Aug 21; 4:6157 |
| doi: | 10.1038/srep06157 | ||
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