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Broadband circular polarizer for randomly polarized light in few-layer metasurface

机译:宽带圆偏振器,用于几层超表面的随机偏振光

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Controlling the polarization state of light has been a significant issue for various integrated optical devices such as optical imaging, sensors, and communications. Recent advances in metamaterials enable the optical elements for controlling light to be miniaturized and to have various multi-functions in subwavelength scale. However, a conventional approach of a circular polarizer has an inherent limitation to eliminate the unwanted circular polarization, which means that the efficiency varies significantly depending on the polarization state of incident light. Here, we propose a novel concept of a circular polarizer by combining two functions of transmission and conversion for orthogonal circular polarizations with a total thickness of 440?nm. The proposed three-layer metasurface composed of rotating silver nanorods transmits the left-handed circularly polarized (LCP) light with maintaining its own polarization state, whereas the right-handed circularly polarized (RCP) light is converted into LCP light. Regardless of the polarization state of incoming light, the polarization of light in the last medium is LCP state in the broadband operating wavelength range from 800?nm to 1100?nm. The converted RCP and the transmitted LCP have efficiencies of up to 48.5% and 42.3%, respectively. Thus the proposed metasurface serves as a stable circular polarizer for a randomly polarized light. In addition, high-efficiency asymmetric transmission of about 0.47 is achieved at the same time due to the conversion characteristic of RCP component. The proposed metasurface has the significance as an ultra-thin optical element applicable to optical switching, sensors, and communications in unidirectional channel as well as a broadband circular polarizer for randomly polarized light.
机译:对于各种集成光学设备,例如光学成像,传感器和通信,控制光的偏振状态一直是一个重要的问题。超材料的最新进展使得用于控制光的光学元件得以小型化,并在亚波长范围内具有多种功能。然而,圆偏振器的常规方法具有消除不想要的圆偏振的固有局限性,这意味着效率取决于入射光的偏振状态而显着变化。在这里,我们提出了一种新颖的圆偏振器概念,它通过将总厚度为440nm的正交圆偏振的透射和转换两个功能结合在一起。拟议的由旋转的银纳米棒组成的三层超表面通过左旋圆偏振(LCP)光并保持其自身的偏振状态,而右旋圆偏振(RCP)光被转换为LCP光。不管入射光的偏振态如何,最后一种介质中的光的偏振态在800?nm至1100?nm的宽带工作波长范围内都是LCP状态。转换后的RCP和传输的LCP的效率分别高达48.5%和42.3%。因此,提出的超颖表面可以用作稳定的圆偏振器,用于随机偏振光。另外,由于RCP分量的转换特性,同时实现了约0.47的高效非对称传输。拟议的超颖表面具有重要的意义,它是一种超薄光学元件,适用于单向通道中的光学开关,传感器和通信,以及用于随机偏振光的宽带圆偏振器。

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