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基于量子相干的可调谐表面等离激元极化激元

Tunable surface plasmon-polaritons based on quantum coherence.

作者信息

Din R U, Zeng X-D, Ge G-Q, Zubairy M S

出版信息

Opt Express. 2019 Jan 7;27(1):322-336. doi: 10.1364/OE.27.000322.

Abstract

Tunable surface plasmons on the interface of a multilevel atomic medium with a cross coupling of the electric and magnetic components of a plasmonic field are investigated. The strong chirality resulting from the quantum coherence leads to some exciting properties of the surface plasmons. Compared to the traditional chiral-metal interface, surface plasmonic mode can still be found at the interface between such atomic media and a dielectric even when both the permittivity and the permeability of the medium are positive. This is in contrast to the conventional plasmonic systems where the signs of the permittivities or permeabilities on the two sides of the interface are opposite. We call this phenomenon an electromagnetically induced plasmon. Additionally, as the chirality and effective refractive index of the atomic medium are dependent on the intensity and phase of the controlling field, we can conveniently manipulate the properties of the surface plasmons.

摘要

研究了具有等离子体场的电磁分量交叉耦合的多级原子介质界面上的可调谐表面等离子体。量子相干导致的强手性导致表面等离子体具有一些令人兴奋的特性。与传统的手性金属界面相比,即使介质的介电常数和磁导率均为正,在这种原子介质与电介质之间的界面处仍可发现表面等离子体模式。这与传统等离子体系统形成对比,在传统等离子体系统中,界面两侧的介电常数或磁导率符号相反。我们将这种现象称为电磁诱导等离子体。此外,由于原子介质的手性和有效折射率取决于控制场的强度和相位,我们可以方便地操纵表面等离子体的特性。

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