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Plasmon Polaritons in 2-D Nanoparticle Arrays

机译:二维纳米粒子阵列中的等离激元

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摘要

The hybrid plasmonic--electromagnetic modes---or plasmon polaritons---in 2-D square arrays of noncontacting noble-metal nanoparticles are studied via an exactly solvable model. The approach accounts self-consistently for diffractive losses out of the plane and also for the vector nature of the electromagnetic field, and is thus in essence a 3-D theory of the 2-D nanoparticle array. The resulting polarization mixing between modes leads to a coupling between longitudinal and transverse excitation off special directions in the Brillouin zone. This is manifested as warping of the plasmon--polariton dispersion surfaces. Modes with group and phase velocities of opposite signs are observed.
机译:通过精确可解的模型研究了非接触贵金属纳米粒子的二维正方形阵列中的混合等离子-电磁模式或等离振子极化子。该方法自洽地解决了平面外的衍射损耗以及电磁场的矢量性质,因此从本质上讲是2-D纳米粒子阵列的3-D理论。模式之间产生的极化混合导致在布里渊区特定方向的纵向和横向激发之间的耦合。这表现为等离激元-极化子分散表面的翘曲。观察到具有相反符号的群速度和相速度的模式。

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