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Localization of scattering resonances in aperiodic Vogel spirals

机译:非周期性Vogel螺旋中散射共振的定位

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By using the dyadic Green's matrix spectral method, we demonstrate that aperiodic deterministic Vogel spirals made of electric dipoles support a light localization transition in three dimensions, an effect that does not occur in traditional uniform random media. We discover a light localization transition in Vogel spiral arrays embedded in three-dimensional space by evaluating the Thouless conductance, the level spacing statistics, and by performing a finite-size scaling. We probe light localization in the plane of the array by analyzing the behavior of the scattering resonances in three-dimensional space. This light localization transition is different from the Anderson transition because Vogel spirals are aperiodic deterministic structures characterized by nonuniform geometries. Moreover, this transition occurs when the vector character of light is fully taken into account, in contrast to what is expected for traditional uniform random media of pointlike scatterers. We show that light localization in Vogel arrays is a collective phenomenon that involves the contribution of multiple length scales. Vogel spirals are suitable photonic platforms to localize light thanks to their distinctive structural correlation properties that enable collective electromagnetic excitations with strong light-matter coupling. Our results unveil the importance of aperiodic correlations for the engineering of photonic media with strongly enhanced light-matter coupling compared to the traditional periodic and homogeneous random media.
机译:通过使用Dyadic Green的矩阵光谱方法,我们证明了由电偶极级的非周期性确定性Vogel螺旋在三维中支撑光局部化转变,这是在传统均匀随机介质中不发生的效果。我们通过评估Thousless电导,水平间距统计数据,并通过执行有限尺寸的缩放,在嵌入三维空间中嵌入三维空间中的Vogel螺旋阵列中的光局部化过渡。通过分析三维空间中的散射共振的行为,探测阵列平面中的光定位。这种光局部化转换与Anderson转换不同,因为Vogel螺旋是具有非均匀几何形状的非周期性确定性结构。此外,当完全考虑光的载体特征时,发生这种转换,与指向散射体的传统均匀随机介质的预期相反。我们表明Vogel阵列中的光明本地化是一种集体现象,涉及多个长度尺度的贡献。 Vogel螺旋是合适的光子平台,通过其独特的结构相关性能来定位光线,使得具有强烈的浅灰质耦合的集体电磁激励。我们的研究结果揭示了与传统的周期性和均匀随机介质相比具有强大增强的浅型浅射击耦合的光子介质工程的对非周期性相关性的重要性。

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  • 来源
    《Physical review, B 》 |2019年第10期| 共12页
  • 作者单位

    Boston Univ Dept Elect &

    Comp Engn 8 St Marys St Boston MA 02215 USA;

    Boston Univ Dept Elect &

    Comp Engn 8 St Marys St Boston MA 02215 USA;

    Univ Fed Rio de Janeiro Inst Fis BR-21941972 Rio De Janeiro RJ Brazil;

    Boston Univ Dept Elect &

    Comp Engn 8 St Marys St Boston MA 02215 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 固体物理学 ;
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