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Incidence angle-dependent broadband chiral metamaterial for near-infrared light absorption

机译:近红外光吸收的发射角依赖性宽带手性超材料

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摘要

The ability to spin-selectively absorb circularly polarized light plays a critical role in various photonic devices. Here we propose and investigate a broadband chiral metamaterial composed of asymmetric split-ring resonators, showing a wide spin-selective absorption band from 950 to 1200 nm with pronounced circular dichroism up to 20 degrees. We demonstrate that the broadband absorption spectra originate from induced dual chiral resonance modes. Meanwhile, the two different resonances can be adjusted independently, suggesting great flexibility of the designed chiral absorption band for different purposes. Also, the chiral-selective absorption performance is highly dependent on the oblique incident angle due to the extrinsic chirality. The chiral resonance modes can be either enhanced or destroyed under oblique incidence. Such angle-dependent broadband chiral metamaterials may find potential applications for spin-orbit communications, chiral detection, polarimetric imaging, and biosensors. (C) 2020 Optical Society of America
机译:自旋选择性吸收圆偏振光的能力在各种光子器件中起着关键作用。在这里,我们提出并研究了一种由不对称裂环谐振器组成的宽带手性超材料,显示了从950到1200 nm的宽自旋选择性吸收带,圆二色性高达20度。我们证明了宽带吸收光谱起源于诱导的双手性共振模式。同时,这两种不同的共振可以独立调节,这表明设计的手性吸收带在不同用途下具有很大的灵活性。此外,由于非本征手性,手性选择性吸收性能高度依赖于斜入射角。在斜入射下,手征共振模可以增强,也可以破坏。这种角度相关的宽带手性超材料可能在自旋轨道通信、手性检测、偏振成像和生物传感器等方面有潜在的应用。(C) 2020美国光学学会

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