论文标题

基于SI谐振元表面的平面窄带通滤波器

Planar narrow-band-pass filter based on Si resonant metasurface

论文作者

Zheng, Ze, Komar, Andrei, Kamali, Khosro Zangeneh, Noble, John, Whichello, Lachlan, Miroshnichenko, Andrey E., Rahmani, Mohsen, Neshev, Dragomir N., Xu, Lei

论文摘要

光学共振的介电元面提供了独特的能力,可以根据不同的电气和磁性MIE多极共振的激发和干扰,完全控制光的波前,极化,强度或光谱含量。纳米化和纳米技术的广泛可及性的最新进展导致了高质量功能性光学跨面的研究领域的激增,这些功能性光学跨面可能会替代超纯特征的传统光学成分。用元图技术代替常规的光学滤波组件提供了显着的优势,包括较低的集成成本,超薄紧凑的配置,易于组合使用多个功能以及对材料的限制较少。在这里,我们提出并在实验上证明了一个基于阵列中的Si纳米孔子组成的光学介电元表面的平面窄带滤波器。通过将电气和磁性偶极子共振彼此相邻,已经实现了宽带传输光谱谷(约200毫米)。同时,我们通过激发高质量泄漏模式获得狭窄的传输峰,该模式是通过在元曲面中集体纵向磁偶极子共振产生的连续体中部分打破结合状态而形成的。我们提出的基于跨表面的滤波器显示出稳定的倾斜光入射率(在10度以内)。我们的工作暗示了纳米级光子学设备(例如显示器,光谱法)的许多潜在应用。

Optically resonant dielectric metasurfaces offer unique capability to fully control the wavefront, polarisation, intensity or spectral content of light based on the excitation and interference of different electric and magnetic Mie multipolar resonances. Recent advances of the wide accessibility in the nanofabrication and nanotechnologies have led to a surge in the research field of high-quality functional optical metasurfaces which can potentially replace or even outperform conventional optical components with ultra-thin feature. Replacing conventional optical filtering components with metasurface technology offers remarkable advantages including lower integration cost, ultra-thin compact configuration, easy combination with multiple functions and less restriction on materials. Here we propose and experimentally demonstrate a planar narrow-band-pass filter based on the optical dielectric metasurface composed of Si nanoresonators in array. A broadband transmission spectral valley (around 200~nm) has been realised by combining electric and magnetic dipole resonances adjacent to each other. Meanwhile, we obtain a narrow-band transmission peak by exciting a high-quality leaky mode which is formed by partially breaking a bound state in the continuum generated by the collective longitudinal magnetic dipole resonances in the metasurface. Our proposed metasurface-based filter shows a stable performance for oblique light incidence with small angles (within 10 deg). Our work imply many potential applications of nanoscale photonics devices such as displays, spectroscopy, etc.

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