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通过调整折射率的虚部实现超表面波导耦合器的RGB耦合效率均衡

Equalization of RGB coupling efficiencies of metasurface waveguide coupler by adjusting imaginary part of refractive index.

作者信息

Duan Ruqing, Gu Diyang, Liang Chenhui, Xia Lele, Chen Hang, Chen Yuan, Yang Liu

出版信息

Opt Express. 2024 May 6;32(10):16670-16687. doi: 10.1364/OE.517864.

Abstract

Optical metasurfaces offer high-efficiency and flexible wavefront shaping for near-eye displays, especially in wideband waveguide couplers accommodating RGB primary colors. By leveraging the resonance characteristics of sub-wavelength periodic nanostructures, metasurfaces surpass the limitations of traditional optics that rely on multiple components and mediums. In this study, we propose adjustment of the imaginary parts of the material refractive indices as a new method to achieve balanced first-order diffraction efficiencies among RGB colors over a wide field of view (FOV) in an in-coupling metasurface waveguide coupler. Physical mechanism is investigated deeply and systematically in theory. It is found that nanostructure resonances deflect the wavefront and Poynting vector, significantly enhancing first-order diffraction efficiency, while resonance-enhanced absorption plays a crucial role in balancing the diffraction efficiency of RGB primary colors. First experimental demonstration well confirms the practical feasibility of this method and a uniform first-order diffraction efficiency of approximately 20% is achieved among RGB colors across a FOV as large as ∼30° over a single-piece glass substrate. This research provides insights into the design and mechanisms of metasurface waveguide couplers, advancing our understanding of metasurface-based RGB displays and facilitating further advancements in this field.

摘要

光学超表面为近眼显示器提供了高效且灵活的波前整形,特别是在容纳RGB三原色的宽带波导耦合器中。通过利用亚波长周期性纳米结构的共振特性,超表面超越了依赖多个组件和介质的传统光学的局限性。在本研究中,我们提出调整材料折射率的虚部,作为在入射耦合超表面波导耦合器的宽视场(FOV)内实现RGB颜色之间平衡的一阶衍射效率的新方法。从理论上对物理机制进行了深入系统的研究。发现纳米结构共振使波前和坡印廷矢量发生偏转,显著提高一阶衍射效率,而共振增强吸收在平衡RGB原色的衍射效率方面起着关键作用。首次实验证明很好地证实了该方法的实际可行性,并且在单片玻璃基板上,在高达约30°的视场内,RGB颜色之间实现了约20%的均匀一阶衍射效率。本研究为超表面波导耦合器的设计和机制提供了见解,推进了我们对基于超表面的RGB显示器的理解,并促进了该领域的进一步发展。

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