论文标题

二维电子液体中的流体动力逆法拉第效应

Hydrodynamic Inverse Faraday Effect in Two Dimensional Electron Liquid

论文作者

Potashin, S. O., Kachorovskii, V. Yu., Shur, M. S.

论文摘要

我们表明,嵌入或放置在二维电子液体附近或放置在二维电子液体(2DEL)附近的小型导电物体,例如纳米层或纳米仪,并在邻近2Del中诱导``扭曲的'''等离子振动。由于流体动力学非线性导致螺旋敏感的圆形直流电流和磁矩,振荡被纠正。可以在室温下在不同材料的室温下观察到这种流体动力的法拉第效应(Hife)。在形成谐振等离激子耦合器的纳米球的周期性阵列中,野生植物的增强是显着增强的。暴露于圆两极的波的这种耦合器将整个2DEL转换为涡旋状态。因此,扭曲的等离子体模式支持谐振等离激元增强的栅极可调光学磁化。由于等离子体和磨碎的贡献的干扰,共振具有不对称的Fano样形状。这些共振提出了不受触点和互连影响的2DEL属性的签名,因此提供了有关2DEL属性的最准确信息。特别是,共振的宽度编码有关2DEL的动量松弛时间和粘度的直接信息。

We show that a small conducting object, such as a nanosphere or a nanoring, embedded into or placed in the vicinity of the two-dimensional electron liquid (2DEL) and subjected to a circularly polarized electromagnetic radiation induces ``twisted'' plasmonic oscillations in the adjacent 2DEL. The oscillations are rectified due to the hydrodynamic nonlinearities leading to the helicity sensitive circular dc current and to a magnetic moment. This hydrodynamic inverse Faraday effect (HIFE) can be observed at room temperature in different materials. The HIFE is dramatically enhanced in a periodic array of the nanospheres forming a resonant plasmonic coupler. Such a coupler exposed to a circularly polarized wave converts the entire 2DEL into a vortex state. Hence, the twisted plasmonic modes support resonant plasmonic-enhanced gate-tunable optical magnetization. Due to the interference of the plasmonic and Drude contributions, the resonances have an asymmetric Fano-like shape. These resonances present a signature of the 2DEL properties not affected by contacts and interconnects and, therefore, providing the most accurate information about the 2DEL properties. In particular, the widths of the resonances encode direct information about the momentum relaxation time and viscosity of the 2DEL.

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