极化子
声子
范德瓦尔斯力
表面声子
材料科学
联轴节(管道)
分子振动
凝聚态物理
分子物理学
红外线的
旋转-振动耦合
物理
分子
拉曼光谱
光学
量子力学
冶金
作者
Andrei Bylinkin,Martin Schnell,Marta Autore,Francesco Calavalle,Peining Li,Javier Taboada‐Gutiérrez,Song Liu,James H. Edgar,Fèlix Casanova,Luis E. Hueso,Pablo Alonso‐González,Alexey Y. Nikitin,Rainer Hillenbrand
出处
期刊:Nature Photonics
[Springer Nature]
日期:2020-11-23
卷期号:15 (3): 197-202
被引量:98
标识
DOI:10.1038/s41566-020-00725-3
摘要
Phonon polaritons in van der Waals materials can strongly enhance light–matter interactions at mid-infrared frequencies, owing to their extreme field confinement and long lifetimes1–7. Phonon polaritons thus bear potential for vibrational strong coupling with molecules. Although the onset of vibrational strong coupling was observed spectroscopically with phonon-polariton nanoresonators8, no experiments have resolved vibrational strong coupling in real space and with propagating modes. Here we demonstrate by nanoimaging that vibrational strong coupling can be achieved between propagating phonon polaritons in thin van der Waals crystals (hexagonal boron nitride) and molecular vibrations in adjacent thin molecular layers. We performed near-field polariton interferometry, showing that vibrational strong coupling leads to the formation of a propagating hybrid mode with a pronounced anti-crossing region in its dispersion, in which propagation with negative group velocity is found. Numerical calculations predict vibrational strong coupling for nanometre-thin molecular layers and phonon polaritons in few-layer van der Waals materials, which could make propagating phonon polaritons a promising platform for ultrasensitive on-chip spectroscopy and strong-coupling experiments. Real-space mid-infrared nanoimaging reveals vibrational strong coupling between molecules and propagating phonon polaritons in unstructured, thin hexagonal boron nitride layers, which could provide a platform for testing strong coupling and local control of chemical properties.
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