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Waveguiding properties of short linear chains of nonspherical metal nanoparticles

机译:非球形金属纳米粒子的短线性链的波导特性

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We study numerically the discrete dispersion relations and waveguiding properties of relatively short linear chains of spherical and spheroidal silver nanoparticles. Simulations are based on the Drude model for the dielectric permittivity of metal and on the dipole approximation for the electromagnetic interaction of particles. We also simulate the dynamics of femtosecond optical pulse propagation along such chains. In the case that we consider (10 particles per chain), reflections from the chain terminals play a significant detrimental role. We show that dissipative traps can be used to reduce the effects of reflections. We also show that chains composed of oblate spheroids with sufficiently small aspect ratio (nanodisks) have better waveguiding properties when compared to chains made of particles with other spheroidal shapes. This includes a slower rate of decay, larger group velocity, and larger bandwidth. (C) 2014 Optical Society of America
机译:我们通过数值研究球形和球形银纳米粒子的相对较短的线性链的离散色散关系和波导特性。模拟基于Drude模型的金属介电常数和偶极子近似值进行的粒子的电磁相互作用。我们还模拟了飞秒沿这些链传播的光脉冲的动力学。在我们考虑的情况下(每条链10个粒子),链末端的反射起着重要的有害作用。我们表明,可以使用耗散陷阱来减少反射的影响。我们还显示,与由具有其他球形形状的粒子制成的链相比,由具有足够小的长宽比的扁球形(纳米盘)组成的链具有更好的波导性能。这包括较慢的衰减速率,较大的组速度和较大的带宽。 (C)2014年美国眼镜学会

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