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首页> 外文期刊>Organic Electronics >Carbon chain-based spintronic devices: Tunable single-spin Seebeck effect, negative differential resistance and giant rectification effects
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Carbon chain-based spintronic devices: Tunable single-spin Seebeck effect, negative differential resistance and giant rectification effects

机译:碳链自旋电子器件:可调节的单旋塞贝克效应,负差分电阻和巨大的整流效应

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摘要

Using the density functional theory combined with the Keldysh non-equilibrium Green's function methods, we investigate the thermally (or voltage)-induced spin transport properties of a two-probe device consisting of a carbon atom chain sandwiched between two zigzag graphene nanoribbon (ZGNR) electrodes. When the edge of one ZGNR electrode is partially doped by B atoms, the flowing direction of thermal single-spin current can be reversed in contrast with the undoped case. In addition, when a voltage is applied across the carbon-based device at room temperature, a giant rectification ratio of104is observed which mainly originates from the band-structure incompatibility between two ZGNR electrodes in the voltage window. Moveover, in the high-voltage region, a single-spin negative differential resistance is also observed in the carbon-based device. Our findings here suggest that the carbon-based systems can be used to design spintronic devices with multiple functions.
机译:使用密度泛函理论与Keldysh非平衡格林函数方法相结合,我们研究了由碳原子链夹在两个曲折石墨烯纳米带(ZGNR)之间的碳纤维组成的双探针设备的热(或电压)诱导自旋输运性质。电极。当一个ZGNR电极的边缘部分被B原子掺杂时,与未掺杂的情况相比,热单自旋电流的流动方向可以反转。另外,当在室温下跨碳基器件施加电压时,观察到巨大的整流比104,其主要源于电压窗口中两个ZGNR电极之间的带结构不相容。在高压区域中,在碳基器件中还观察到单旋负差分电阻。我们在这里的发现表明,基于碳的系统可用于设计具有多种功能的自旋电子设备。

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  • 来源
    《Organic Electronics》 |2018年第4期|170-176|共7页
  • 作者单位

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

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

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

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

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

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

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Spin thermoelectric effects; Giant rectification effects; Negative differential resistances;

    机译:自旋热电效应;巨整流效应;负差分电阻;

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