时变应用和时间衍射的高效epsilon-近零超表面

Romain Tirole, Taran Attavar, J. Dranczewski, E. Galiffi, J. Pendry, S. Maier, S. Vezzoli, R. Sapienza
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引用次数: 0

摘要

时变超表面近年来成为纳米尺度光控制和基础物理探索的新课题。我们从非结构超表面的时间狭缝中证明了时间衍射。在一个泵浦探针实验中,激发铟锡氧化物薄膜在金上的Berreman模式导致薄膜的强、有效的全光调制,并导致探针的时间衍射。与之前的非结构化epsilon-近零薄膜相比,我们在使用较低强度和明显较低的厚度(40 nm)的情况下获得了6 nm的频移和23 nm的展宽,这表明该结构的占地面积最小。样品的深度亚波长性质使得时变解释简单有效,为超快光学实验的时变结构铺平了道路。
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Efficient epsilon-near-zero metasurface for time-varying applications and time diffraction
Time-varying metasurfaces have recently emerged as a new topic of interest for control of light at the nanoscale and exploration of fundamental physics. We demonstrate time diffraction from a time slit in an unstructured metasurface. In a pump-probe experiment, excitation of the Berreman mode of a thin film of Indium-Tin-Oxide over gold leads to strong, efficient all-optical modulation of the film, and to time diffraction of the probe. In comparison to previous works in unstructured epsilon-near-zero films, we obtain a 6 nm frequency shift and a 23 nm broadening using lower intensities and a significantly lower thickness of 40 nm, which demonstrates the minimal footprint of the structure. The deeply subwavelength nature of the sample makes a time-varying interpretation simple and efficient, paving the way for time-dependent architectures for ultrafast optical experiments.
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