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Multipolar optically induced electric and magnetic resonances in the ellipsoidal nanoparticles

机译:椭圆型纳米粒子中的多极光学诱导的电和磁共振

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In this paper, electric and magnetic resonances induced in the ellipsoidal dielectric nanoparticles in the optical range have been analyzed. Circular displacement currents excited inside the elliptical nano-particles by the incident light result in magnetic dipolar resonance in the dielectric nanoparticles. Kerker's type scattering is observed due to the mutual interference of electric and magnetic resonances. The effect on the resonance conditions with the variation in the relative permittivity from ε_r= 5 to ε_r= 20 of the ellipsoidal nanoparticle has been observed. It has been analyzed that peaks of electric and magnetic resonances come closer by decreasing the electric permittivity of the nanoparticle, which leads to the increase in the directionality in the forward direction, as verified using Generalized Kerker's condition. Further, far field scattering patterns have been obtained using the finite element method. Here, the electric and magnetic resonances have been optically induced up to quadrupolar modes. There is enhancement of the directionality in the forward direction when electric and magnetic resonances are in phase. Further, the effect of size of the linear array of ellipsoidal nanoparticles on the directionality has been analyzed. It has been observed that there is increase in the directivity by increasing the chain of the nanoparticles. Thus, the ellipsoidal nanoparticles can lead to the design of low loss and highly directional optical nanoantennas.
机译:本文分析了光学范围内的椭圆虫介电纳米粒子中诱导的电和磁共振。通过入射光在椭圆纳米颗粒内激发圆形位移电流,导致介电纳米颗粒中的磁性双极共振。由于电磁共振的相互干扰,观察到Kerker的型散射。已经观察到对来自ε_R= 5至ε_R= 20的相对介电常数的变化的效果已经观察到椭圆形纳米粒子的相对介电常数。已经分析,通过降低纳米粒子的电介电常数,电磁和磁共振的峰越近,这导致前向方向上的方向性的增加,如使用广义的Kerker的病情验证。此外,使用有限元方法获得了远场散射图案。这里,电动和磁共振已经光学诱导到四极型模式。当电和磁共振相位时,在向前方向上提高方向性。此外,已经分析了椭圆形纳米颗粒的线性阵列大小对方向性的影响。已经观察到通过增加纳米颗粒链的方向性增加。因此,椭圆型纳米颗粒可以导致低损耗和高方向光学纳米纳米的设计。

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