论文标题

使用等离子体阵列增强振动的光 - 物质耦合强度超出分子浓度极限

Enhancing vibrational light-matter coupling strength beyond the molecular concentration limit using plasmonic arrays

论文作者

Hertzog, Manuel, Munkhbat, Battulga, Baranov, Denis G., Shegai, Timur O., Börjesson, Karl

论文摘要

振动强耦合通过利用称为polaritons的杂化轻度态来改变分子特性的有前途的工具。通常使用填充有机分子的Fabry-Perot腔,分子浓度限制了最大可及耦合强度。高度希望开发提高耦合强度超过分子浓度极限的方法。在这封信中,我们研究了使用FT-IR显微镜和数值建模将金纳米棒阵列添加到包含纯有机分子的腔中的效果。充当人造分子的等离激元纳米棒阵列的掺入会导致填充有机分子的空腔的总耦合强度的数量级提高。此外,我们观察到腔体内的等离子体线宽的大大狭窄。我们预计,这些结果将是探索颤音化学的一步,并且可以用于基于等离子体的生物传感器。

Vibrational strong coupling is emerging as a promising tool to modify molecular properties, by making use of hybrid light-matter states known as polaritons. Fabry-Perot cavities filled with organic molecules are typically used, and the molecular concentration limits the maximum reachable coupling strength. Developing methods to increase the coupling strength beyond the molecular concentration limit are highly desirable. In this letter, we investigate the effect of adding a gold nanorod array into a cavity containing pure organic molecules, using FT-IR microscopy and numerical modeling. Incorporation of the plasmonic nanorod array, that acts as artificial molecules, leads to an order of magnitude increase in the total coupling strength for the cavity filled with organic molecules. Additionally, we observe a significant narrowing of the plasmon linewidth inside the cavity. We anticipate that these results will be a step forward in exploring vibropolaritonic chemistry and may be used in plasmon based bio-sensors.

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