...
首页> 外文期刊>Nanotechnology >Giant circular dichroism of chiral L-shaped nanostructure coupled with achiral nanorod: anomalous behavior of multipolar and dipolar resonant modes
【24h】

Giant circular dichroism of chiral L-shaped nanostructure coupled with achiral nanorod: anomalous behavior of multipolar and dipolar resonant modes

机译:手性L形纳米结构的巨型圆形二色性耦合纳米棒:多极和双极谐振模式的异常行为

获取原文
获取原文并翻译 | 示例
           

摘要

Chirality, which has long been known as an intrinsic property of living organisms, has caught the interest of researchers due to the rapid emergence of chiral metamaterials. The chiroptical response of noble metal nanostructures in visible and near-infrared regions has been widely investigated. Herein, we propose a bilayer Ag metastructure, in which a chiral L-shaped nanostructure at the bottom is coupled with an achiral nanorod acquiring different positions in the top layer with respect to the long and/or short arm of the chiral L-shaped nanostructure at the bottom layer. The metastructure generates a giant circular dichroism (CD) signal resulting from the strong coupling of the multipolar and dipolar resonant modes on the two layers, in the visible and near-infrared regions. With changing the position of the achiral nanorod, an unusual reversal of the CD spectra is observed, along with a fourfold increase in CD intensity in the short wavelength range due to the multipolar resonant modes. The position of the achiral nanorod is tailored by the azimuthal angle of the substrate during the fabrication of the metastructure using the oblique angle deposition method. This study provides insights into the variation of the coupling strength between a chiral L-shaped nanostructure and an achiral nanorod. The results can be useful in designing chiral-achiral composite nanoantennas for sensing devices.
机译:由于手性超材料的快速出现,长期被称为生物体的内在财产,这长期被称为生物体的内在财产。广泛研究了贵金属纳米结构的贵金属纳米结构的阴压反应已被广泛研究。这里,我们提出了双层AG元结构,其中底部的手性L形纳米结构与相对于手性L形纳米结构的长和/或短臂获取顶层中的不同位置的展开纳米结构耦合在底层。该代型产生巨型圆形二中间(CD)信号,由两层上的多极和双极谐振模式的强耦合,在可见光和近红外区域中。随着改变ACHIRAL NANOROD的位置,观察到CD光谱的不寻常逆转,并且由于多极起的谐振模式,短波长范围内的CD强度的四倍增加。在使用倾斜角沉积方法的制造期间,基板在制造期间,通过基板的方位角来定制成式纳米棒的位置。本研究提供了对手性L形纳米结构和展开纳米棒之间的耦合强度的变化的洞察。结果可用于设计手性造型复合纳米纳米纳米纳米,用于传感装置。

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