Zhang Ran, Zhang Zhichao, Fan Yuanyi, Zhang Hao, Chu Jinkui
Key Laboratory for Micro/Nano Technology and System of Liaoning Province, Dalian University of Technology, Dalian 116024, China.
Ningbo Research Institute of Dalian University of Technology, Ningbo 315000, China.
Nanomaterials (Basel). 2023 Feb 22;13(5):813. doi: 10.3390/nano13050813.
Chiral metamaterials are extensively applied in the fields of photoelectric detection, biomedical diagnostics and micro-nano polarization imaging. Currently, single-layer chiral metamaterials are unfortunately limited by several issues, such as a weaker circular polarization extinction ratio and circular polarization transmittance difference. To tackle these issues, a single-layer transmissive chiral plasma metasurface (SCPMs) suitable for visible wavelength is proposed in this paper. Its basic unit is composed of double orthogonal rectangular slots and a spatial π/4 inclined arrangement of the rectangular slot to constitute a chiral structure. Each rectangular slot structure has characteristics that enable the SCPMs to easily achieve a high circular polarization extinction ratio and strong circular polarization transmittance difference. Both the circular polarization extinction ratio and circular polarization transmittance difference of the SCPMs reach over 1000 and 0.28 at a wavelength of 532 nm, respectively. In addition, the SCPMs is fabricated via the thermally evaporated deposition technique and focused ion beam system. This compact structure coupled with a simple process and excellent properties enhances its applicability for the control and detection of polarization, especially during integration with linear polarizers, to achieve the fabrication of a division-of-focal-plane full-Stokes polarimeter.
手性超材料广泛应用于光电探测、生物医学诊断和微纳偏振成像等领域。目前,单层手性超材料不幸受到几个问题的限制,比如圆偏振消光比和圆偏振透过率差异较弱。为了解决这些问题,本文提出了一种适用于可见光波长的单层透射式手性等离子体超表面(SCPMs)。其基本单元由双正交矩形槽和矩形槽的空间π/4倾斜排列构成手性结构。每个矩形槽结构具有使SCPMs能够轻松实现高圆偏振消光比和强圆偏振透过率差异的特性。在波长532nm时,SCPMs的圆偏振消光比和圆偏振透过率差异分别达到1000以上和0.28。此外,SCPMs是通过热蒸发沉积技术和聚焦离子束系统制造的。这种紧凑的结构加上简单的工艺和优异的性能增强了其在偏振控制和检测方面的适用性,特别是在与线性偏振器集成时,可实现焦平面分割全斯托克斯偏振计的制造。