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首页> 外文期刊>Journal of Applied Physics >Optical activity and circular dichroism of a hybrid system composed of a chiral quantum dot and a dielectric nanoparticle
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Optical activity and circular dichroism of a hybrid system composed of a chiral quantum dot and a dielectric nanoparticle

机译:由手性量子点和介电纳米粒子组成的混合系统的光学活性和圆形二中间型

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摘要

We study a hybrid system composed of a chiral quantum dot and a dielectric nanoparticle subjected to an electromagnetic wave. We aim to show that the hybrid system features synergistic properties caused by interactions between its components. We solve the Bloch equation for the density matrix of the chiral quantum dot modeled as a two-level system with transition electric and magnetic dipole moments. We show that the system acts as a bianisotropic meta-atom: The electric polarization (magnetization) can be induced by the incident magnetic (electric) field. The electromagnetic and magnetoelectric polarizability dyadics of the hybrid system are influenced by the nanoparticle size and separation and the intensity and polarization of the incident wave. Due to the self-interaction of the quantum dot in the presence of the nanoparticle, the system exhibits optical activity and circular dichroism spectra of different character in Fano, double peaks, weak transition, and strong transition regions of the parameter space. Notably, in the strong transition region, the optical activity and circular dichroism spectra become discontinuous and dependent on the initial state of the system. The magnetic dipole moment induced in the dielectric nanoparticle plays a key role: Indeed, unlike the isolated chiral quantum dot, the hybrid system exhibits strong circular dichroism in a broad frequency range. The chiral quantum dot-dielectric nanoparticle meta-atom offers unique opportunities for creating low-loss all-dielectric meta-surfaces operating in the visible spectral range.
机译:我们研究手性量子点,并进行电磁波的电介质纳米颗粒的组成的混合系统。我们的目标是表明,该混合动力系统功能造成其组件之间的交互的协同性质。我们解决了布洛赫等式中的手性量子的密度矩阵斑点建模为具有过渡电和磁偶极矩的两电平系统。我们表明,该系统用作一个双各向异性元原子:电动极化(磁化)可以通过入射磁(电)场诱导。混合动力系统的电磁和磁电极化并矢张量由入射波的纳米颗粒尺寸和分离以及强度和偏振的影响。由于在纳米颗粒的存在下,量子点的自身相互作用,该系统表现出的光学活性和不同的字符中的Fano,双峰,弱过渡的圆二色光谱,和参数空间的强过渡区域。值得注意的是,在强过渡区域中,光学活性和圆二色光谱变得不连续的并且取决于系统的初始状态。在介电纳米粒子引起的磁偶极矩起着关键的作用:的确,不像分离手性量子点,所述混合动力系统表现出在宽的频率范围内的强圆二色性。手性量子点 - 介电纳米粒子的元原子提供用于创建低损耗在可见光谱范围内工作的全电介质元表面独特的机会。

著录项

  • 来源
    《Journal of Applied Physics 》 |2021年第4期| 043102.1-043102.11| 共11页
  • 作者

    Maryam Taghilou; MirFaez Miri;

  • 作者单位

    Department of Physics University of Tehran P. O. Box 14395-547 Tehran Iran;

    Department of Physics University of Tehran P. O. Box 14395-547 Tehran Iran;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
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