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首页> 外文期刊>Journal of physical chemistry letters >Giant Valley Splitting and Valley Polarized Plasmonics in Group V Transition-Metal Dichalcogenide Monolayers
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Giant Valley Splitting and Valley Polarized Plasmonics in Group V Transition-Metal Dichalcogenide Monolayers

机译:V族转型金属二甲硅藻族单层巨大谷分裂和谷偏振血浆

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摘要

Two-dimensional group VI transition-metal dichalcogenides (TMDs) provide a promising platform to encode and manipulate quantum information in the valleytronics. However, the two valleys are energetically degenerate, protected by time-reversal symmetry (TRS). To lift this degeneracy, one needs to break the TRS by either applying an external magnetic field or using a magnetic rare-earth oxide substrate. Here, we predict a different strategy to achieve this goal. We propose that the ferromagnetic group V TMD monolayer, in which the TRS is intrinsically broken, can produce a larger valley and spin splitting. A polarized ZnS(0001) surface is also used as a substrate, which shifts the valleys to the low-energy regime (near the Fermi level). Moreover, by calculating its collective electronic excitation behaviors, we show that such a system hosts a giant valley polarized terahertz plasmonics. Our results demonstrate a new way to design and use valleytronic devices, which are both fundamentally and technologically significant.
机译:二维组VI过渡金属二甲基生成剂(TMDS)提供了一个有前途的平台,用于在谷龙学中编码和操纵量子信息。然而,两只山谷是充满活力的退化,受到时间反转对称性的保护(TRS)。为了提升这种退化,需要通过施加外部磁场或使用磁性稀土氧化物衬底来打破TRS。在这里,我们预测实现这一目标的不同策略。我们提出了铁磁组V TMD单层,其中TRS本质上破碎,可以产生较大的山谷和旋转分裂。偏振ZnS(0001)表面也用作基板,其将谷谷移至低能量状态(靠近费米水平)。此外,通过计算其集体电子励磁行为,我们表明这种系统举办了巨大的谷极化太赫兹血浆。我们的结果展示了一种设计和使用谷坑设备的新方法,这些设备在根本上和技术上都很重要。

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