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首页> 外文期刊>Journal of Applied Physics >Transport properties of bare and hydrogenated zigzag silicene nanoribbons: Negative differential resistances and perfect spin-filtering effects
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Transport properties of bare and hydrogenated zigzag silicene nanoribbons: Negative differential resistances and perfect spin-filtering effects

机译:锯齿形和氢化锯齿形硅纳米带的氢化性质:负微分电阻和完美的自旋过滤效果

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摘要

Ab initio calculations are performed to investigate the spin-polarized transport properties of the bare and hydrogenated zigzag silicene nanoribbons (ZSiNRs). The results show that the ZSiNRs with symmetric (asymmetric) edges prefer the ferromagnetic (antiferromagnetic) as their ground states with the semiconductor properties, while the accordingly antiferromagnetic (ferromagnetic) states exhibit the metallic behaviors. These facts result in a giant magnetoresistance behavior between the ferromagnetic and antiferromagnetic states in the low bias-voltage regime. Moreover, in the ferromagnetic ZSiNRs with asymmetric edges, a perfect spin-filtering effect with 100% positive electric current polarization can be achieved by altering the bias voltage. In addition, we also find that the negative differential resistances prefer the metastable states. The findings here indicate that the asymmetric and symmetric ZSiNRs are promising materials for spintronic applications.
机译:从头进行计算以研究裸露的和氢化的之字形硅纳米带(ZSiNRs)的自旋极化传输性质。结果表明,具有对称(非对称)边缘的ZSiNRs更喜欢铁磁(反铁磁)作为具有半导体特性的基态,而相应的反铁磁(铁磁)态则表现出金属性能。这些事实导致在低偏置电压状态下铁磁状态和反铁磁状态之间的巨大磁阻行为。此外,在具有不对称边缘的铁磁ZSiNRs中,通过改变偏置电压,可以实现具有100%正电流极化的完美自旋滤波效果。另外,我们还发现负微分电阻更倾向于亚稳态。此处的发现表明,不对称和对称的ZSiNRs是自旋电子学应用中很有希望的材料。

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  • 来源
    《Journal of Applied Physics 》 |2014年第12期| 124312.1-124312.8| 共8页
  • 作者单位

    College of Physics and Engineering, Changshu Institute of Technology and Jiangsu Laboratory of Advanced Functional Materials, Changshu 215500, China;

    College of Physics and Engineering, Changshu Institute of Technology and Jiangsu Laboratory of Advanced Functional Materials, Changshu 215500, China;

    College of Physics and Engineering, Changshu Institute of Technology and Jiangsu Laboratory of Advanced Functional Materials, Changshu 215500, China;

    College of Physics, Optoelectronics and Energy, Soochow University, Suzhou, Jiangsu 215006, China;

    School of Physics and Technology, University of Jinan, Jinan, Shandong 250022, China;

    College of Engineering, Bohai University, Jinzhou 121013, China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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