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Circular dichroism effect in a double-layer dolmen array nanostructure

机译:双层Dolmen阵列纳米结构中的圆形二分效应

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摘要

Chiral plasmonic nanostructures have been studied widely in past years and have various applications in biological sensing, negative refractive indexing, and analytical chemistry. Dolmen is also a commonly used nano-structure in many recent research papers. By placing dolmens in different directions and forming a double-layer dolmen array (DLDA), a new nanostructure with good circular dichroism (CD) effect is designed in this paper. We get up to the maximum of 0.5 of CD effect through numerical simulation. Among three obvious resonance wavelengths of CD effect, magnetic dipole resonance appears in two of them and contributes to the origin of a strong CD effect. In these different coupling modes, the strongest one locating at the largest wavelength is the result of a big magnetic dipolar resonance generated by circulation current in two layers of dolmen together, and the second strongest CD effect is caused by individual magnetic dipolar resonance in the opposite direction located in each layer. At the weakest one, the circulation current disappears and only a regular electric dipolar resonance appears. This simulation result shows that magnetic dipolar resonance of plasmonic nanostructure could create a strong CD effect, and much more effectively in the DLDA we propose. The results can help us in designing novel chiral optical nanostructures and provide applications in the interactions between photons and electrons. (C) 2017 Optical Society of America
机译:在过去几年中,手性等离子体纳米结构已广泛研究,并在生物传感,负折射率和分析化学中具有各种应用。 Dolmen在最近的研究论文中也是一种常用的纳米结构。通过将Dolmens放置在不同方向上并形成双层Dolmen阵列(DLDA),本文设计了一种具有良好圆形二色性(CD)效应的新纳米结构。通过数值模拟,我们通过数值仿真获得了最大的CD效果。在CD效应的三个明显的共振波长中,磁性偶极子共振出现在其中两个中,并有助于强镉效应的起源。在这些不同的耦合模式中,在最大波长处定位的最强的一个定位是通过两层Dolmen中的循环电流产生的大磁性双极共振的结果,第二个最强的CD效应是由相反的单个磁性双极共振引起的位于每层的方向。在最弱的一个中,循环电流消失,只出现常规电偶极谐振。该仿真结果表明,等级纳米结构的磁性偶极共振可产生强烈的CD效应,在我们提出的DLDA中更有效地更有效。结果可以帮助我们设计新型手性光学纳米结构,并在光子和电子之间的相互作用中提供应用。 (c)2017年光学学会

著录项

  • 来源
    《Applied optics》 |2017年第22期|共4页
  • 作者

    Liu Youyao; Yu Xiaoshan;

  • 作者单位

    Xian Univ Posts &

    Telecommun Sch Elect Engn Xian 710121 Peoples R China;

    Xidian Univ Sch Telecommun Engn Xian 710071 Peoples R China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 应用;
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