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Metal-free magnetism spin-dependent Seebeck effect and spin-Seebeck diode effect in armchair graphene nanoribbons

机译:扶手椅石墨烯纳米带中的无金属磁性自旋相关塞贝克效应和自旋塞贝克二极管效应

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摘要

Metal-free magnetism and spin caloritronics are at the forefront of condensed-matter physics. Here, the electronic structures and thermal spin-dependent transport properties of armchair graphene nanoribbons (N-AGNRs), where N is the ribbon width (N = 5–23), are systematically studied. The results show that the indirect band gaps exhibit not only oscillatory behavior but also periodic characteristics with E3p > E3p+1 > E3p+2 (E3p, E3p+1 and E3p+2 are the band gaps energy) for a certain integer p, with increasing AGNR width. The magnetic ground states are ferromagnetic (FM) with a Curie temperatures (TC) above room temperature. Furthermore, the spin-up and spin-down currents with opposite directions, generated by a temperature gradient, are almost symmetrical, indicating the appearance of the perfect spin-dependent Seebeck effect (SDSE). Moreover, thermally driven spin currents through the nanodevices induced the spin-Seebeck diode (SSD) effect. Our calculation results indicated that AGNRs can be applied in thermal spin nanodevices.
机译:无金属的磁性和自旋热电子学处于凝聚态物理的最前沿。在此,系统地研究了扶手椅石墨烯纳米带(N-AGNRs)的电子结构和热自旋相关的输运性质,其中N为碳带宽度(N = 5-23)。结果表明,E3p> E3p + 1> E3p + 2(E3p,E3p + 1和 E 3p + 2 是一定整数 p 的带隙能量,随着AGNR宽度的增加。磁性基态是铁磁性(FM),居里温度( T C )高于室温。此外,由温度梯度产生的方向相反的向上和向下旋转的电流几乎是对称的,这表明出现了完全自旋相关的塞贝克效应(SDSE)。此外,通过纳米器件的热驱动自旋电流会引起自旋塞贝克二极管(SSD)效应。我们的计算结果表明AGNRs可应用于热自旋纳米器件。

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