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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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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 E 3p ?E3p+1??E3p+2 (E 3p , 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 (T C ) 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为带宽(N?=?5-23)。结果表明,对于a,间接带隙不仅表现出振荡行为,而且表现出周期性特征,其中E 3p>?E3p + 1?>?E3p + 2(E 3p,E3p + 1和E3p + 2是带隙能量)。一定的整数p,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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