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Tailoring the chirality of light emission with spherical Si-based antennas

机译:裁剪的手性光发射球形Si-based天线

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摘要

Chirality of light is of fundamental importance in several enabling technologies with growing applications in life sciences, chemistry and photodetection. Recently, some attention has been focused on chiral quantum emitters. Consequently, optical antennas which are able to tailor the chirality of light emission are needed. Spherical nanoresonators such as colloids are of particular interest to design optical antennas since they can be synthesized at a large scale and they exhibit good optical properties. Here, we show that these colloids can be used to tailor the chirality of a chiral emitter. To this purpose, we derive an analytic formalism to model the interaction between a chiral emitter and a spherical resonator. We then compare the performances of metallic and dielectric spherical antennas to tailor the chirality of light emission. It is seen that, due to their strong electric dipolar response, metallic spherical nanoparticles spoil the chirality of light emission by yielding achiral fields. In contrast, thanks to the combined excitation of electric and magnetic modes, dielectric Si-based particles feature the ability to inhibit or to boost the chirality of light emission. Finally, it is shown that dual modes in dielectric antennas preserve the chirality of light emission.
机译:光的基本重要的手性几个支持技术成长应用于生命科学、化学和光电探测。专注于手性量子发射器。光学天线能够定制手性的光发射是必要的。特定的nanoresonators胶体等光学天线的设计,因为他们感兴趣他们可以在大规模合成具有良好的光学性质。这些胶体可以用来定制手性手性的排放国。我们推导模型的解析形式一个手性相互作用发射器和一个球形谐振器。表演的金属和电介质球天线调整光的手性发射。电偶极反应,金属球纳米颗粒破坏光的手性排放量产生非手性的字段。由于合并后的电气和激励磁模式,介电Si-based粒子功能抑制或促进的能力手性的光发射。在电介质天线保持双模式发光的手性。

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