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Efficient, designable, and broad-bandwidth optical extinction via aspect-ratio-tailored silver nanodisks

机译:通过纵横比定制的银纳米盘,实现高效,可设计和宽带宽的光学消光

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摘要

Subwavelength resonators, ranging from single atoms to metallic nanoparticles, typically exhibit a narrow-bandwidth response to optical excitations. We computationally design and experimentally synthesize tailored distributions of silver nanodisks to extinguish light over broad and varied frequency windows. We show that metallic nanodisks are 2–10x more efficient in absorbing and scattering light than common structures, and can approach fundamental limits to broadband scattering for subwavelength particles. We measure broadband extinction per volume that closely approaches theoretical predictions over three representative visible-range wavelength windows, confirming the high efficiency of nanodisks and demonstrating the collective power of computational design and experimental precision for developing new photonics technologies.
机译:从单个原子到金属纳米粒子的亚波长谐振器通常表现出对光激发的窄带宽响应。我们通过计算设计和实验合成了银纳米盘的定制分布,以消除宽频和可变频率窗口上的光。我们表明,金属纳米盘在吸收和散射光方面比普通结构高2-10倍,并且可以接近亚波长粒子宽带散射的基本极限。我们测量的每单位宽带消光率接近三个代表性可见光范围波长窗口上的理论预测值,从而确认了纳米盘的高效率,并证明了开发新光子学技术的计算设计和实验精度的集体力量。

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