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Coherent control of light-matter interactions in polarization standing waves

机译:极化驻波中光-质相互作用的相干控制

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摘要

We experimentally demonstrate that standing waves formed by two coherent counter-propagating light waves can take a variety of forms, offering new approaches to the interrogation and control of polarization-sensitive light-matter interactions in ultrathin (subwavelength thickness) media. In contrast to familiar energy standing waves, polarization standing waves have constant electric and magnetic energy densities and a periodically varying polarization state along the wave axis. counterintuitively, anisotropic ultrathin (meta)materials can be made sensitive or insensitive to such polarization variations by adjusting their azimuthal angle.
机译:我们通过实验证明,由两个相干的对向传播光波形成的驻波可以采用多种形式,为在超薄(亚波长厚度)介质中对偏振敏感的光-质相互作用的询问和控制提供了新方法。与常见的能量驻波相反,极化驻波具有恒定的电能和磁能密度,并且沿波轴具有周期性变化的极化状态。与直觉相反,可以通过调整各向异性的超薄(meta)材料的方位角来使其敏感或不敏感。

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