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Nonlocal effect in surface plasmon polariton of ultrathin metal films

机译:超薄金属膜表面等离子体激元的非局域效应

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Using the nonlocal conductivity based on quantum response theory, we study the optical properties of p-polarized wave in quartz-metal-film-air structures, especially the influence of nonlocal effect on the surface plasmon polaritons (SPPs) resonance. In absorption spectrum, the resonant peak of SPP is found, and the dependence of the resonant peak on film thickness shows that nonlocal effect in the SPP resonance is enhanced significantly with the decrease of film-thickness, especially in the less than 20 nm metal film. We calculate the surface charge density as a function of frequency, and find that the frequencies at the charge and absorption peaks are the same. This clearly confirms that the absorption peak stems from SPP resonance excitation, and SPPs absorb the energy of the electromagnetic wave via charge oscillations. In the case of SPP resonance, the charge and electric field on the down-surface of thin film are always greater than that on the up-surface; however, the situation is just opposite in the case of no SPP resonance. This implies that the SPP resonance occurs near the down-surface of the film. Moreover, due to the nonlocal response of electric current to the electric field, the energy flow and electric current show anomalous oscillations, and with the increase of film thickness the anomalous oscillations exhibit obvious attenuation (C)) 2015 Elsevier B.V. All rights reserved
机译:使用基于量子响应理论的非局部电导率,我们研究了石英-金属-薄膜-空气结构中p极化波的光学特性,特别是非局部效应对表面等离子体激元(SPPs)共振的影响。在吸收光谱中,发现了SPP的共振峰,共振峰对膜厚的依赖性表明,随着膜厚的减小,SPP共振中的非局域效应显着增强,特别是在小于20 nm的金属膜中。我们计算表面电荷密度随频率的变化,发现电荷和吸收峰处的频率相同。这清楚地确认了吸收峰源自SPP共振激发,并且SPP通过电荷振荡吸收电磁波的能量。在SPP共振的情况下,薄膜下表面的电荷和电场总是大于上表面的电荷和电场;但是,在没有SPP共振的情况下情况恰好相反。这意味着SPP共振发生在膜的下表面附近。此外,由于电流对电场的非局部响应,能量流和电流会显示异常振荡,并且随着膜厚度的增加,异常振荡会表现出明显的衰减(C)2015 Elsevier B.V.保留所有权利

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