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基于增益-损耗补偿的反厄米磁电介质实现泰莱根零折射率效应。

Loss-gain compensated anti-Hermitian magnetodielectric medium to realize Tellegen nihility effects.

出版信息

Opt Lett. 2023 Feb 15;48(4):1032-1035. doi: 10.1364/OL.483103.

Abstract

Generalized duality transformations significantly modify the constitutive relations of electromagnetic media, preserving principal electromagnetic properties. Here, we contemplate transformation of Tellegen nihility as a specific type of extreme-property nonreciprocal bi-isotropic media and show that some intriguing electromagnetic properties of that medium can be realized in a particular class of isotropic magnetodielectric media without magnetoelectric coupling. We show that the permittivity and permeability of the corresponding transformed medium have equal absolute values and opposite signs. Depending on the value of the Tellegen parameter of the original medium, the transformed magnetodielectric medium can be Hermitian, non-Hermitian, or anti-Hermitian, which simultaneously exhibits loss and gain. Focusing on the latter class of anti-Hermitian media, we theoretically and numerically demonstrate that this extraordinary medium allows propagation of electromagnetic plane waves having zero time-averaged Poynting vector, similarly to the original Tellegen nihility media. Hopefully, this work can open novel opportunities for manipulating electromagnetic fields.

摘要

广义对偶变换极大地改变了电磁介质的本构关系,同时保持了主要的电磁性质。在这里,我们将泰莱根虚空视为一种特殊类型的极端特性非互易双各向同性介质,并表明在没有磁电耦合的情况下,该介质的一些有趣的电磁特性可以在一类各向同性磁电介质中实现。我们表明,相应的变换介质的介电常数和磁导率具有相等的绝对值和相反的符号。根据原始介质的泰莱根参数的值,变换后的磁电介质可以是厄米的、非厄米的或反厄米的,同时表现出损耗和增益。针对后一类反厄米介质,我们从理论和数值上证明,这种特殊的介质允许具有零时间平均坡印廷矢量的电磁波平面波传播,类似于原始的泰莱根虚空介质。希望这项工作能够为操控电磁场开辟新的机会。

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