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Tunable Metasurface and Flat Optical Zoom Lens on a Stretchable Substrate

机译:可拉伸基板上的可调超表面和平面光学变焦镜头

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摘要

A mechanically reconfigurable metasurface that can continuously tune the wavefront is demonstrated in the visible frequency range by changing the lattice constant of a complex Au nanorod array fabricated on a stretchable polydimethylsiloxane substrate. It is shown that the anomalous refraction angle of visible light at 632.8 nm interacting with the tunable metasurface can be adjusted from 11.4 degrees to 14.9 degrees by stretching the substrate by similar to 30%. An ultrathin flat 1.7X zoom lens whose focal length can continuously be changed from 150 to 250 mu m is realized, which also demonstrates the potential of utilizing metasurfaces for reconfigurable flat optics.
机译:通过改变在可拉伸聚二甲基硅氧烷衬底上制造的复杂Au纳米棒阵列的晶格常数,在可见频率范围内展示了可以连续调谐波前的机械可重构超表面。结果表明,通过将基板拉伸约30%,可以将632.8 nm处的可见光与可调超表面相互作用的异常折射角从11.4度调整到14.9度。实现了可将焦距从150微米连续更改为250微米的超薄型扁平1.7倍变焦镜头,这也证明了利用超表面实现可重构平面光学器件的潜力。

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