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Origami Metawall: Mechanically Controlled Absorption and Deflection of Light

机译:折纸金属墙:机械控制的光的吸收和偏转

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摘要

Metamaterials/metasurfaces, which have subwavelength resonating unit cells (i.e., meta‐atoms), can enable unprecedented control over the flow of light. Despite their significant progress, achieving dynamical control of both energy and momentum of light remains a challenge. Here, a mechanically tunable metawall capable of either absorbing light energy or modulating light momentum, by incorporating the magnetic meta‐atoms into a 3D printed origami grating, is theoretically designed and experimentally realized. Through mechanical stretching or compressing of the Miura‐ori pattern, the function of metawall can transit from an absorber, a mirror, to a negative reflector. Particularly, the continuously geometric deformation of the Miura‐ori lattice is a promising approach to compensate the angular dispersion in gradient metasurfaces. Considering the prominent mechanical properties and strong deformation abilities of origami structures, the findings may open an alternative avenue toward lightweight and deployable metadevices with diversified and continuously alterable electromagnetic properties.
机译:具有亚波长共振晶胞(即超原子)的超材料/超表面可以实现对光流的空前控制。尽管取得了重大进展,但对能量和光的动量进行动态控制仍然是一个挑战。在这里,通过将磁性超原子结合到3D打印的折纸光栅中,可以设计出一种能够吸收光能或调节光动量的可机械调节的超颖壁,是在理论上设计并通过实验实现的。通过机械拉伸或压缩Miura-ori图案,隔墙的功能可以从吸收器,反射镜转移到负反射器。特别是,Miura-ori晶格的连续几何变形是一种有前途的方法,可以补偿梯度超表面的角度色散。考虑到折纸结构的突出机械性能和强大的变形能力,这些发现可能为电磁特性多样化且可连续变化的轻型可部署元设备开辟一条替代途径。

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