论文标题

液体环境中极化子的振幅和相位分辨的纳米成像和纳米光谱

Amplitude- and phase-resolved nano-imaging and nano-spectroscopy of polaritons in liquid environment

论文作者

Virmani, Divya, Bylinkin, Andrei, Lopez, Irene Dolado, Janzen, Eli, Edgar, James H., Hillenbrand, Rainer

论文摘要

局部和繁殖偏振子可以对(BIO)化学物质和过程进行高度敏感的分析。北极子的纳米影像学允许至关重要的实验模式识别和研究场限制。在这里,我们描述了液体中极化纳米影像学和光谱的两个设置,这是(生物)化学样品必不可少的环境。我们首先证明了具有转仰光红外散射型扫描近场光学显微镜(S-SNOM)的天线映射,其中尖端充当近场散射探针。然后,我们证明了基于内部反射(TIR)的总设置,其中尖端是在范德华材料中发射和探测超限制的极性子,这里是氮化硼(H-BN)薄片中的声子极化子。这项工作奠定了液体中S-SNOM基偏振子干涉法的基础,该液体具有广泛的应用潜力,可在极性材料的裸露或功能化表面上对化学反应的现场研究,包括(BIO)化学识别(类似于经典表面等离子体等离子体等离子体的识别)。

Localized and propagating polaritons allow for highly sensitive analysis of (bio)chemical substances and processes. Nanoimaging of the polaritons evanescent fields allows for critically important experimental mode identification and for studying field confinement. Here we describe two setups for polariton nanoimaging and spectroscopy in liquid, which is an indispensable environment for (bio)chemical samples. We first demonstrate antenna mapping with a transflection infrared scattering-type scanning near-field optical microscope (s-SNOM), where the tip acts as a near-field scattering probe. We then demonstrate a total internal reflection (TIR) based setup, where the tip is both launching and probing ultra-confined polaritons in van der Waals materials, here phonon polaritons in hexagonal boron nitride (h-BN) flakes. This work lays the foundation for s-SNOM based polariton interferometry in liquid, which has wide application potential for in-situ studies of chemical reactions at the bare or functionalized surface of polaritonic materials, including (bio)chemical recognition analogous to the classical surface plasmon resonance spectroscopy.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源