首页> 外文会议>Metamaterials >Simulation of resonant behavior and negative refraction in metal nanowire composites
【24h】

Simulation of resonant behavior and negative refraction in metal nanowire composites

机译:金属纳米线复合材料共振行为和负折射的模拟

获取原文
获取原文并翻译 | 示例

摘要

A metal-in-dielectric metamaterial structure different from that composed of split-ring-resonators and wire units was proposed. The metamaterial layer is composed of randomly distributed parallel pairs of nanowires of subwavelength size that form electromagnetically active units. It was predicted that the metamaterial should exhibit macroscopic negative refraction. In a recent paper fabrication of the metamaterial in the form of periodic array of parallel golden nanorods with trapezoidal cross section was reported and a negative refractive index of n = -0.3 was observed at a wavelength 1.5 μm (200 THz). In this paper we simulate response of a single pair of nanowires to near-infrared illumination and observe surface plasmon resonances using FDTD method. We simulate light propagation through the metamaterial slab made of one, two and three layers. In each layer the nanowires cover 10% of the surface. In simulations made for a single layer medium, negative refraction is observed for wavelengths from 1.55 to 2.1 μm, with Δλ/λ ≈ 0.3. When the number of layers increases, the range of negatively refracted wavelengths becomes narrower. For a narrow range of wavelengths that are close to the resonant frequency the intensity transmission of three layers reaches -7dB for the angle of incidence of 10°. Then layers with two orientations of nanowires are considered. In the first stack of layers all nanowires are oriented in parallel. This configuration assures plasmon resonances for both the electric and magnetic components of electromagnetic wave in all layers. In the second stack, nanowires in two subsequent layers are oriented perpendicularly. In the second layer, the plasmon resonance for the electric component of light is due to the oblique incidence of light. For a small angle of incidence of a near infrared narrow Gaussian beam we calculate two characteristics: the attenuation vs. wavelength and the lateral shift of the beam on the plane-parallel slab vs. wavelength. For a narrow range of wavelengths simulations show negative refraction of a beam incident the plane of the nanowires and a corresponding shift in the far field.
机译:提出了一种介电金属超材料结构,该结构不同于由开口环谐振器和导线单元组成的结构。超材料层由形成电磁活性单元的亚波长尺寸的纳米线的随机分布的平行平行线对组成。预计超材料应表现出宏观的负折射。在最近的论文中,报道了具有梯形横截面的平行金纳米棒的周期性阵列形式的超材料的制备,并且在波长1.5μm(200 THz)处观察到负折射率n = -0.3。在本文中,我们模拟了一对纳米线对近红外照明的响应,并使用FDTD方法观察了表面等离子体共振。我们模拟光通过由一层,两层和三层组成的超材料平板传播。在每一层中,纳米线覆盖了10%的表面。在单层介质的模拟中,观察到波长为1.55至2.1μm的负折射,Δλ/λ≈0.3。当层数增加时,负折射波长的范围变窄。对于接近谐振频率的窄波长范围,对于10°的入射角,三层的强度传输达到-7dB。然后考虑具有两个方向的纳米线的层。在第一层堆叠中,所有纳米线平行取向。这种配置确保了所有层中电磁波的电和磁分量的等离子体共振。在第二堆叠中,两个后续层中的纳米线垂直定向。在第二层中,光的电子成分的等离子体激元共振是由于光的倾斜入射所致。对于近红外窄高斯光束的小入射角,我们计算出两个特征:衰减与波长的关系以及光束在平行平板上的横向偏移与波长的关系。对于狭窄的波长范围,模拟显示了入射到纳米线平面的光束的负折射以及远场的相应偏移。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号