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首页> 外文期刊>Annales de l'I.H.P >Polarization-insensitive terahertz array-induced transparency in diffractively coupled metasurface of embedded square lattice
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Polarization-insensitive terahertz array-induced transparency in diffractively coupled metasurface of embedded square lattice

机译:极化不敏感的太敏感太阵列阵列诱导的嵌入式方形晶格衍射耦合的耦合元曲面的透明度

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摘要

Most of terahertz lattice-induced transparency behaviors are investigated under the lattice modes matching the plasmonic modes. Alternatively, we propose terahertz polarization-insensitive array-induced transparency effect due to diffractive coupling in between two collective eigenmodes of meta-atoms on sublattice-sites in the metasurface of embedded square lattice. Aforementioned two collective eigenmodes destructively interfere each other so as to induce a transparency window in frequency spectrum. A large positive group delay (30 ps) is foreseen in the vicinity of the induced transparency window (0.37 THz), where the electric susceptibility is zero. Our finding manifests a new design of terahertz polarization-insensitive slow light device.
机译:在匹配等离子体模式的晶格模式下研究了大多数太赫兹晶格诱导的透明度行为。或者,我们提出了由于嵌入式方形晶格中的胚胎表面的两个集组偶像曲率之间的衍射偶偶衍生引起的阵列诱导的透明度效应。上述两个集体特征模块破坏性地相互干预,以便在频谱中诱导透明窗口。在诱导的透明窗口(0.37THz)附近,预见到大的正组延迟(30 ps),其中电磁化率为零。我们的发现表明了太赫兹极化不敏感慢灯装置的新设计。

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