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Electromagnetic Impurity-Immunity Induced by Parity-Time Symmetry

机译:奇偶校正时间对称诱导的电磁杂质 - 免疫

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Impurities usually play an important role in modifying the bulk properties of electronic or electromagnetic materials. In this work, we demonstrate a way to break this discipline and realize the extraordinary physical property of impurity-immunity, which leads to perfect transmission irrespective of embedded impurities of almost any material and shape. This extraordinary property comes from the exceptional points of a pair of parity-time ( P T )-symmetric metasurfaces sandwiching a slab of epsilon-near-zero medium. By systematically investigating the P T -symmetric metasurfaces sandwiching a slab of dielectrics or metamaterials, we obtain the two complementary solutions of exceptional points corresponding to perfect transmission. Interestingly, when the permittivity of the slab approaches zero, the two solutions of exceptional points coalesce into one exceptional point. At such a critical point, we find that the original “doping” effect of impurities in epsilon-near-zero media, proposed by Nader Engheta’s group very recently [I. Liberal et?al. , Science 355, 1058 (2017) ], is significantly suppressed. Our work shows that exceptional points can be used to eliminate scattering of impurities in a bulk medium.
机译:杂质通常在改变电子或电磁材料的堆积性质方面发挥着重要作用。在这项工作中,我们展示了一种破坏这一学科的方法,并意识到杂质 - 免疫的非凡物质性质,这导致完全传播,而不管几乎任何材料和形状的嵌入式杂质都是完美的。这种非凡的财产来自一对奇偶校验时间(p t)的异常点(p t)-mmetric metasurfaces夹在epsilon近零介质的平板上。通过系统地研究夹在电介质或超材料的平板中的P T-MEMMETRICEURFACE,我们获得了与完美传输相对应的特殊点的两个互补解决方案。有趣的是,当板坯接近零的介电常数时,卓越点的两个解决方案结合到一个特殊点。在如此关键点,我们发现,最近纳米埃尔赫达群提出的ε-近零媒体中的杂质原来的“兴奋剂”效应[I.自由主义et?al。 ,科学355,1058(2017)]受到显着抑制。我们的作品表明,卓越点可用于消除批量介质中的杂质的散射。

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