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Photon-assisted spin transport in blue phosphorene nanotubes

机译:蓝磷烯纳米管中的光子辅助旋转输送

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摘要

We have investigated photon-assisted spin injection into blue phosphorene nanotubes (PNTs) with ferromagnetic cobalt electrodes by nonequilibrium Green's function combined with light-matter interaction based on the first-order Born approximation. The results show the photo-induced spin current. The spin up and spin down photocurrents flow in opposite directions for zigzag blue nanotubes (ZPNTs) with anti-parallel magnetic configuration of the electrodes. By changing the structures of the blue phosphorene nanotube and the magnetization of the electrodes, multitudes of quantum spin transport properties are investigated, such as the nearly perfect photo-induced spin current and strong photo-polarization current signal. The results suggest that ZPNTs could serve as a potential material candidate for optical communication devices.
机译:通过非Quiberim的功能与基于一阶近似的光物质相互作用,将光子辅助旋转注射到蓝色磷烯纳米管(PNT)中,用铁磁钴电极与光物质相互作用结合。 结果表明了光引起的旋转电流。 旋转和旋转光电流在相反的方向上流动,用于具有电极的抗平行磁构造的Z字形蓝色纳米管(ZPNT)。 通过改变蓝色磷烯纳米管的结构和电极的磁化,研究了多种量子旋转运输性能,例如近乎完美的光置旋转电流和强光偏振电流信号。 结果表明ZPNT可以用作光通信设备的潜在材料候选者。

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