自旋电子学
单层
材料科学
光电子学
自旋(空气动力学)
居里温度
铁磁性
纳米技术
凝聚态物理
旋转泵
自旋极化
铁磁性
隧道磁电阻
磁性半导体
滤波器(信号处理)
微磁学
纳米电子学
偏压
磁性
隧道枢纽
作者
Yunfei Gao,Aolin Li,Zesen Fu,Chenzhi Liu,Fangping Ouyang
摘要
Two-dimensional (2D) magnetic materials are a hot topic in novel spintronic devices because of their unique physical and chemical properties induced by dimensional effects. Based on first-principles calculations, we predict that the FeWS2 monolayer is a half-metal with a high Curie temperature. We design a 2D FeWS2/WS2/FeWS2 multifunctional in-plane spintronic device. The device can be used as a magnetic tunnel junction or a spin filter upon applying a finite bias voltage. It can also function as a spin photogalvanic device upon applying polarized light. Under polarized light, without modifying the device structure or external bias voltage, the device can generate a significant photogalvanic effect, along with fully spin-polarized currents, pure spin currents, and the spin-valve effect. These results show that the 2D FeWS2 monolayer has great potential for application in low-power, highly integrated multifunctional spintronic devices.
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