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磁光庞加莱-贝里超表面中的磁活性太赫兹波前控制与超手性场

Magnetically active terahertz wavefront control and superchiral field in a magneto-optical Pancharatnam-Berry metasurface.

作者信息

Tan Zhi-Yu, Fan Fei, Li Teng-Fei, Chang Sheng-Jiang

出版信息

Opt Express. 2021 Jan 18;29(2):2037-2048. doi: 10.1364/OE.414004.

DOI:10.1364/OE.414004
PMID:33726405
Abstract

Nowadays, the manipulation of the chiral light field is highly desired to characterize chiral substances more effectively, since the chiral responses of most molecules are generally weak. Terahertz (THz) waves are related to the vibration-rotational energy levels of chiral molecules, so it is significant to actively control and enhance the chirality of THz field. Here, we propose a metal/magneto-optical (MO) hybrid Pancharatnam-Berry (PB) phase structure, which can serve as tunable broadband half-wave plate and control the conversion of THz chiral states with the highest efficiency of over 80%. Based on this active PB element, MO PB metasurfaces are proposed to manipulate THz chiral states as different behaviors: beam deflector and scanning, Bessel beam, and vortex beam. Due to the magnetic-tunablibity, these proposed MO PB metasurfaces can be turned from an "OFF" to "ON" state by changing the external magnetic field. We further investigate the near-field optical chirality and the chirality enhancement factors in far field of the chiral Bessel beam and vortex beam, achieving the superchiral field with the highest chiral enhancement factor of 40 for 0th Bessel beam. These active, high efficiency and broadband chiral PB metasurfaces have promising applications for manipulation the THz chiral light and chiroptical spectroscopic techniques.

摘要

如今,由于大多数分子的手性响应通常较弱,人们非常希望能够操纵手性光场以更有效地表征手性物质。太赫兹(THz)波与手性分子的振动 - 转动能级相关,因此主动控制和增强太赫兹场的手性具有重要意义。在此,我们提出一种金属/磁光(MO)混合的潘查拉特纳姆 - 贝里(PB)相位结构,它可以用作可调谐宽带半波片,并以超过80%的最高效率控制太赫兹手性态的转换。基于这种有源PB元件,提出了MO PB超表面来操纵太赫兹手性态,表现出不同的行为:光束偏转器和扫描、贝塞尔光束和涡旋光束。由于磁可调性,这些提出的MO PB超表面可以通过改变外部磁场从“关”状态转变为“开”状态。我们进一步研究了手性贝塞尔光束和涡旋光束的近场光学手性以及远场中的手性增强因子,对于零阶贝塞尔光束实现了高达40的最高手性增强因子的超手性场。这些有源、高效且宽带的手性PB超表面在操纵太赫兹手性光和手性光学光谱技术方面具有广阔的应用前景。

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