WIDEBAND HIGH-REFLECTION CHIRAL DIELECTRIC METASURFACE

Zhipeng Hu, N. He, Yuwei Sun, Yi Jin, Sailing He
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引用次数: 10

Abstract

Compared to natural materials, artificial subwavelength structures can enhance chiroptical effects in a stronger way, and the requirement of low material loss and wideband operation is desired in many situations. Here, we propose an all-dielectric chiral metasurface as a periodic array of centrosymmetric staggered silicon cuboid pairs to achieve strong circular dichroism in a wide band. As a demonstration, the designed chiral metasurface may strongly reflect the chosen circularly polarized light with the spin preserved in the operating wavelength range of 1.51 ∼ 1.60μm while highly transmit (with an efficiency greater than 95%) the opposite circularly polarized light with the spin flipped. Then, two application cases are given for the designed chiral metasurface. A flat chiral meta-lens is constructed to produce wideband focusing in the transmission/reflection side while the disturbing from the opposite circular polarization is well blocked by high reflection/transmission. A chiral Fabry-Perot cavity is also constructed, which has an extremely high quality factor (2.1E4). The proposed method provides an efficient way to produce strong chiroptical effects and has a promising potential for various applications such as signal processing, sensing, radiation and detection.
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宽带高反射手性介电超表面
与天然材料相比,人工亚波长结构可以更强地增强热效应,并且在许多情况下需要低材料损耗和宽带运行。在这里,我们提出了一种全介质手性超表面,作为中心对称交错硅长方体对的周期性阵列,以实现宽带内的强圆二色性。结果表明,在所设计的手性超表面上,自旋保持在1.51 ~ 1.60μm的工作波长范围内,可以较强地反射所选的圆偏振光,而自旋翻转时,可以较强地透射相反的圆偏振光(效率大于95%)。然后给出了所设计的手性元曲面的两个应用实例。构造了一个平面手性元透镜,在透射/反射侧产生宽带聚焦,同时高反射/透射很好地阻挡了相反圆偏振的干扰。手性法布里-珀罗腔也被构造,具有极高的质量因子(2.1E4)。该方法提供了一种产生强热效应的有效途径,在信号处理、传感、辐射和检测等领域具有广阔的应用前景。
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