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Photonic spin Hall effect detection using weak measurement in the SPR structure using antimonene: A sensing application

机译:使用锑烯的SPR结构中使用弱测量的光子旋转霍尔效应检测:传感应用

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摘要

In this paper, surface plasmon resonance (SPR) structure along with two-dimensional (2-D) antimonene material is proposed to enhanced the photonic spin Hall effect (PSHE). It is showed that the gold (Au) based SPR structure with antimonene can effectively improve the PSHE due to the SPR effect and the strong spin-orbit coupling of antimonene. The maximum transverse beam displacement (δ_H~-) with the help of weak measurement technique for the H polarization can be up to 61.67 μm under the optimized thickness of Au layer, which is much greater than the previously reported S_H~- values as well as Au based SPR structure with graphene and MoS_2. Also, SPR structure with antimonene is utilized for biosensing based on PSHE and found that the sensitivity 5468 μm/ RIU, which is more than two times higher than the graphene based SPR structure. It is believed that the results may have opened a path to enhanced the PSHE in spin-based nanophotonic de-vices, chemical, and biological sensing.
机译:在本文中,提出了表面等离子体共振(SPR)结构以及二维(2-D)抗亚环材料以增强光子旋转霍尔效应(PSHE)。 结果表明,由于SPR效应和锑的强旋转轨道耦合,基于锑烯的SPH结构可以有效地改善PSHE。 在HO偏振的弱测量技术的帮助下,最大横向梁位移(Δ_h〜 - )在Au层的优化厚度下可以高达61.67μm,这远远大于先前报告的S_H〜 - 值 基于AU的SPR结构,具有石墨烯和MOS_2。 此外,具有锑烯的SPR结构用于基于PSHE的生物传感,并发现灵敏度5468μm/ riu,其比基于石墨烯的SPR结构高两倍以上。 据信,结果可能已经开通了一种途径,以增强基于旋转的纳米光电脱发,化学和生物传感的PSHE。

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