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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Thermal spin filtering, thermal spin switching and negative-differential-resistance in thermal spin currents in zigzag SiC nanoribbons
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Thermal spin filtering, thermal spin switching and negative-differential-resistance in thermal spin currents in zigzag SiC nanoribbons

机译:锯齿形SiC纳米带的热自旋电流中的热自旋滤波,热自旋切换和负微分电阻

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摘要

Spin caloritronics with a combination of spintronics and thermoelectrics has potential applications in future information science and opens a new direction in the development of multi-functional materials. Based on density functional theory and the nonequilibrium Green's function method, we calculate thermal spin-dependent transport through a zigzag silicon carbide nanoribbon (ZSiCNR), which is a heterojunction consisting of a left electrode (ZSiC-2HlH) and right electrode terminated (ZSiC-lHlH) by hydrogen. Our results show that when the temperature in the left contact increases over a critical value, the thermal spin-down current increases remarkably from zero, while the thermal spin-up current remains zero in the total-temperature region, indicating that a perfect thermal spin filter together with a perfect spin switcher is obtained. Furthermore, the thermal spin current shows a negative differential resistance effect and quantum oscillation behaviors. These results suggest that the zigzag SiC nanoribbon proposed by us can be designed as a highly-efficient spin caloritronics device with multiple functionalities.
机译:结合了自旋电子学和热电学的自旋热电子学在未来的信息科学中具有潜在的应用,并为多功能材料的发展开辟了新的方向。基于密度泛函理论和非平衡格林函数方法,我们计算了通过曲折碳化硅纳米带(ZSiCNR)的热自旋依赖性输运,该碳纳米管是由左电极(ZSiC-2HlH)和右电极端接(ZSiC-氢)。我们的结果表明,当左触点的温度升高到临界值以上时,热降速电流从零开始显着增加,而热降速电流在总温度范围内保持为零,这表明理想的热旋转滤波器与理想的自旋切换器一起使用。此外,热自旋电流显示出负的差分电阻效应和量子振荡行为。这些结果表明,我们提出的之字形SiC纳米带可以设计为具有多种功能的高效自旋量热电子器件。

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