论文标题

3D手性元晶体中的表面晶格共振用于等离子传感

Surface Lattice Resonances in 3D Chiral Metacrystals for Plasmonic Sensing

论文作者

Manoccio, Mariachiara, Tasco, Vittorianna, Todisco, Francesco, Passaseo, Adriana, Cuscuna', Massimo, Tarantini, Iolena, Esposito, Marco

论文摘要

手性晶格模式是由手性等离激元颗粒以合适的周期性组装而成的手性等离子体颗粒引起的。这些共振表现出对激发式握力的依赖,并且它们在等离子晶格中的观察与基本等离子单元的手势特征严格相关。在这里,我们显示了手性表面晶格在适当设计的纳米纤维阵列中的出现,完全3D手性纳米对象通过聚焦离子束处理制造。通过在杂化模式下调整等离激元和光子成分的相对重量,我们分析了强派衍射耦合的物理机制,导致晶格模式的出现,从而通往策略等离子血浆系统以进行感测应用。特别是,我们确定了一个耦合方案,在该耦合方案中,在光子质量因子和等离子体场之间增强的大型固有圆形二分法与定义明确的平衡,可以最大程度地鉴定系统在周围介质中歧视折射率变化的能力。我们的结果为在等离子体晶格中利用圆形二色性奠定了基础,以进行高性能生物传感。

Chiral lattice modes are hybrid states arising from chiral plasmonic particles assembled in ordered arrays with opportune periodicity. These resonances exhibit dependence on excitation handedness, and their observation in plasmonic lattices is strictly related to the chiroptical features of the fundamental plasmonic unit. Here, we show the emergence of chiral surface lattice resonances in properly engineered arrays of nanohelices, fully 3D chiral nano-objects fabricated by focused ion beam processing. By tuning the relative weight of plasmonic and photonic components in the hybrid mode, we analyze the physical mechanism of strong diffractive coupling leading to the emergence of the lattice modes, opening the way to the engineering of chiral plasmonic systems for sensing applications. In particular, we identify a coupling regime where the combination of a large intrinsic circular dichroism of the plasmonic resonance with a well-defined balance between the photonic quality factor and the plasmonic field enhancement maximizes the capability of the system to discriminate refractive index changes in the surrounding medium. Our results lay the foundation for exploiting circular dichroism in plasmonic lattices for high performance biosensing.

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