Fromenteze Thomas, Yurduseven Okan, Uche Chidinma, Arnaud Eric, Smith David R, Decroze Cyril
University of Limoges, CNRS, XLIM, UMR 7252, F-87000, Limoges, France.
Centre for Wireless Innovation (CWI), Institute of Electronics, Communications and Information Technology (ECIT), Queen's University Belfast, Belfast, BT3 9DT, UK.
Nat Commun. 2023 Oct 6;14(1):6249. doi: 10.1038/s41467-023-41775-9.
The reaction-diffusion principle imagined by Alan Turing in an attempt to explain the structuring of living organisms is leveraged in this work for the procedural synthesis of radiating metasurfaces. The adaptation of this morphogenesis technique ensures the growth of anisotropic cellular patterns automatically arranged to satisfy local electromagnetic constraints, facilitating the radiation of waves controlled in frequency, space, and polarization. Experimental validations of this method are presented, designing morphogenetic metasurfaces radiating far-field circularly polarized beams and generating a polarization-multiplexed hologram in the radiative near-field zone. The exploitation of morphogenesis-inspired models proves particularly well suited for solving generative design problems, converting global physical constraints into local interactions of simulated chemical reactants ensuring the emergence of self-organizing meta-atoms.
艾伦·图灵为解释生物体结构而设想的反应扩散原理,在这项工作中被用于辐射超表面的程序合成。这种形态发生技术的应用确保了各向异性细胞图案的生长,这些图案会自动排列以满足局部电磁约束,从而有利于对频率、空间和极化进行控制的波的辐射。本文给出了该方法的实验验证,设计了辐射远场圆极化光束并在辐射近场区域生成偏振复用全息图的形态发生超表面。事实证明,利用受形态发生启发的模型特别适合解决生成式设计问题,即将全局物理约束转化为模拟化学反应物的局部相互作用,从而确保自组织元原子的出现。