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Spatiotemporal path discontinuities of wavepackets propagating across a meta-atom

机译:跨亚原子传播的波包的时空路径不连续性

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The realization of phase discontinuities across metasurfaces has led to a new class of reflection and refraction. Here we present theory and experiment on the discontinuous propagation of wavepackets across subwavelength-thickness meta-atoms. Using acoustic waves, we observe the process of wavepackets traversing a meta-atom with abrupt displacements, which appear as path discontinuities on a space-time diagram. We construct a tunable meta-atom from two coupled resonators at ~500?Hz, map the spatiotemporal trajectories of individual sonic pulses, and reveal discontinuities at the meta-atom where the pulses exit at a time ~50?ms ahead or behind their arrivals. Applications include thin acoustic metasurface lenses.
机译:跨超表面的相位不连续性的实现导致了一类新的反射和折射。在这里,我们介绍了波包跨亚波长厚度亚原子的不连续传播的理论和实验。使用声波,我们观察到波包以突变的形式穿越一个亚原子的过程,这些突变在时空图上显示为路径不连续性。我们用两个耦合谐振器在〜500?Hz处构建一个可调的偏原子,绘制各个声脉冲的时空轨迹,并揭示在脉冲到达或离开后约50µms的时间退出的偏原子处的不连续性。 。应用包括超薄声学超表面透镜。

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