Giant Vortex Dichroism in Simplified-Chiral-Double-Elliptical Metamaterials.

IF 4.3 3区 材料科学 Q2 CHEMISTRY, MULTIDISCIPLINARY Nanomaterials Pub Date : 2025-01-25 DOI:10.3390/nano15030189
Shiqi Luo, Kangzhun Peng, Zhi-Yuan Li, Wenyao Liang
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Abstract

Vortex dichroism in chiral metamaterials is of great significance to the study of photoelectric detection, optical communication, and the interaction between light and matter. Here we propose a compact chiral metamaterials structure composed of two elliptical SiO2 rods covered with a Au film on a substrate to achieve a significant vortex-dichroism effect. Such a structure has different responses to a Laguerre-Gaussian beam carrying opposite-orbital angular momentum, resulting in giant vortex dichroism. The influences of various structural parameters are analyzed, and the optimal parameters are obtained to realize a remarkable vortex dichroism of about 58.5%. The simplicity and giant VD effect of the proposed metamaterials make it a promising candidate for advancing chiral optical applications such as optical communication and sensing.

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简化手性双椭圆超材料的巨涡旋二色性。
手性超材料的涡旋二色性对光电探测、光通信以及光与物质相互作用的研究具有重要意义。本文提出了一种紧凑的手性超材料结构,该结构由两个椭圆形的SiO2棒组成,并在衬底上覆盖一层Au膜,以实现显著的涡旋二色性效果。这种结构对携带反轨道角动量的拉盖尔-高斯光束有不同的响应,导致巨大的涡旋二色性。分析了各结构参数对旋涡二色性的影响,得到了旋涡二色性达到58.5%的最优参数。所提出的超材料的简单性和巨大的VD效应使其成为推进光通信和传感等手性光学应用的有希望的候选者。
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来源期刊
Nanomaterials
Nanomaterials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
CiteScore
8.50
自引率
9.40%
发文量
3841
审稿时长
14.22 days
期刊介绍: Nanomaterials (ISSN 2076-4991) is an international and interdisciplinary scholarly open access journal. It publishes reviews, regular research papers, communications, and short notes that are relevant to any field of study that involves nanomaterials, with respect to their science and application. Thus, theoretical and experimental articles will be accepted, along with articles that deal with the synthesis and use of nanomaterials. Articles that synthesize information from multiple fields, and which place discoveries within a broader context, will be preferred. There is no restriction on the length of the papers. Our aim is to encourage scientists to publish their experimental and theoretical research in as much detail as possible. Full experimental or methodical details, or both, must be provided for research articles. Computed data or files regarding the full details of the experimental procedure, if unable to be published in a normal way, can be deposited as supplementary material. Nanomaterials is dedicated to a high scientific standard. All manuscripts undergo a rigorous reviewing process and decisions are based on the recommendations of independent reviewers.
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