Electromagnetic Duality Metagratings for Transparency with Minimized Specular Reflection
Cong Wang (107450), Jin Qin (2218183), Hanyu Liu (1360137), Hongchen Chu (9616340), Wei Liu (20030), Ruwen Peng (4527934), Mu Wang (235245), Yun Lai (4590787)
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Recently, transparent metasurfaces with tailored diffusive reflection have attracted great attention due to their transformative potential in future glare-free optical designs. In this work, we propose a class of electromagnetic duality metagratings composed of a pair of dual meta-atoms, which are generated from the combined operations of duality transformation and 90° rotation. We rigorously prove that such gratings guarantee distortion-free transmission with minimized specular reflection, regardless of the details of the meta-atoms. Such a remarkable property, protected by the dual relation between the meta-atoms, has been validated through full-wave simulations and microwave experiments (9.1–9.5 GHz). Our work unveils the fundamental role of electromagnetic duality symmetry in meta-device designs, opening new avenues toward transparency with minimized specular reflection and offering promising applications in antireflection and stealth technologies.
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