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集成液晶和超表面的自旋电子太赫兹发射器中宽带偏振的灵活控制

Flexible Control of Broadband Polarization in a Spintronic Terahertz Emitter Integrated with Liquid Crystal and Metasurface.

作者信息

Sun Yun, Xu Yong, Li Helin, Liu Yongshan, Zhang Fan, Cheng Houyi, Tao Shina, Wang Huacai, Hu Wei, Lu Yanqing, Zhao Chao, Nie Tianxiao, Zhao Weisheng, Guo Qi, Wen Lianggong

机构信息

School of Integrated Circuit Science and Engineering, Beihang University, Beijing 100191, China.

Beihang Hangzhou Innovation Institute Yuhang, Beihang University, Hangzhou 310023, China.

出版信息

ACS Appl Mater Interfaces. 2022 Jul 20;14(28):32646-32656. doi: 10.1021/acsami.2c04782. Epub 2022 Jun 23.

Abstract

Flexible polarization control of the terahertz wave in the wide bandwidth is crucial for numerous applications, such as terahertz communication, material characterization, imaging, and biosensing diagnosis. However, this promise is impeded by the operating bandwidth of circular polarization states, control modes, and the efficiency of the regulation. Here, we report a spintronic terahertz emitter integrated with phase complementary elements, consisting of a liquid crystal and metasurface, to achieve broadband polarization control with high flexibility. This strategy allows the broadband conversion between linear, elliptical, and circular polarization by changing the rotation angle to modulate the space-variant Pancharatnam-Berry phase. The device is characterized with a terahertz time-domain spectroscopy system, demonstrating that the ellipticity of the circular polarization state could keep greater than 0.9 in 0.60-0.99 THz. In the case of an external electro-magnetic field, further polarization modulation experiments are carried out to provide multiple conversion approaches for multi-azimuth. We first propose a method of full broadband polarization state control of the terahertz emitter based on Pancharatnam-Berry phase modulation and an external electro-magnetic field. We believe that such integrated devices with broadband working bandwidth and multiple control modes will make valuable contributions to the development and multi-scene applications of ultrafast terahertz technologies.

摘要

太赫兹波在宽带内的灵活偏振控制对于众多应用至关重要,如太赫兹通信、材料表征、成像和生物传感诊断等。然而,圆偏振态的工作带宽、控制模式以及调节效率阻碍了这一前景的实现。在此,我们报道了一种集成了由液晶和超表面组成的相位互补元件的自旋电子太赫兹发射器,以实现具有高灵活性的宽带偏振控制。该策略通过改变旋转角度来调制空间变化的庞加莱 - 贝里相位,从而实现线性、椭圆和圆偏振之间的宽带转换。该器件通过太赫兹时域光谱系统进行表征,表明在0.60 - 0.99太赫兹范围内,圆偏振态椭圆率可保持大于0.9。在外部电磁场情况下,进一步开展偏振调制实验,为多方位提供多种转换方法。我们首次提出了一种基于庞加莱 - 贝里相位调制和外部电磁场的太赫兹发射器全宽带偏振态控制方法。我们相信,这种具有宽带工作带宽和多种控制模式的集成器件将为超快太赫兹技术的发展和多场景应用做出重要贡献。

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