论文标题
在水相中探测中红外声子极化子
Probing Mid-Infrared Phonon Polaritons in the Aqueous Phase
论文作者
论文摘要
Phonon Polaritons(PHP)是带有杂交电磁场的集体声子振荡,在中型频率范围内浓缩光场,与分子的振动模式相匹配。 PHP的利用具有化学传感工具和北极星增强纳米光谱的希望。但是,由于缺乏原位中红外纳米成像方法,对水相的phps的调查和创新仍然停滞不前。水的强红色吸收禁止在中红外的光学递送和检测散射型近场显微镜。在这里,我们提出了我们的解决方案:检测由液相峰力红外(LIPFIR)显微镜引起的PHP引起的光热反应。在10b同位素增强的H-BN中,PHP的特征性干扰条纹在水相中测量,并提取其分散关系。 LIPFIR可以在流体相中测量中红外phps,开放可能性,并促进水中IR中Ir polaronics的发展。
Phonon polaritons (PhPs), the collective phonon oscillations with hybridized electromagnetic fields, concentrate optical fields in the mid-infrared frequency range that matches the vibrational modes of molecules. The utilization of PhPs holds the promise for chemical sensing tools and polariton-enhanced nanospectroscopy. However, investigations and innovations on PhPs in the aqueous phase remains stagnant, because of the lack of in situ mid-infrared nano-imaging methods in water. Strong infrared absorption from water prohibits optical delivery and detection in the mid-infrared for scattering-type near-field microscopy. Here, we present our solution: the detection of photothermal responses caused by the excitation of PhPs by liquid phase peak force infrared (LiPFIR) microscopy. Characteristic interference fringes of PhPs in 10B isotope-enriched h-BN were measured in the aqueous phase and their dispersion relationship extracted. LiPFIR enables the measurement of mid-infrared PhPs in the fluid phase, opening possibilities, and facilitating the development of mid-IR phonon polaritonics in water.