论文标题

真实空间观察传播声子偏振子和有机分子之间的振动强耦合

Real-space observation of vibrational strong coupling between propagating phonon polaritons and organic molecules

论文作者

Bylinkin, Andrei, Schnell, Martin, Autore, Marta, Calavalle, Francesco, Li, Peining, Taboada-Gutitierrez, Javier, Liu, Song, Edgar, James H., Casanova, Felix, Hueso, Luis E., Alonso-Gonzalez, Pablo, Nikitin, Alexey Y., Hillenbrand, Rainer

论文摘要

范德华(VDW)材料中的Polaron Polaritons(PPS)可以在中红外频率下强烈增强光结合的相互作用,这是由于其极端的红外场限制和较长的寿命。因此,PPS具有与分子实现振动强耦合(VSC)的潜力。尽管最近已经使用PP纳米孔子观察到VSC的发作,但到目前为止,尚未在真实空间和非结构化层中的传播模式中解析VSC。在这里,我们通过实际空间纳米影像表明,在薄VDW晶体(特别是H-BN)中传播PPS与相邻薄分子层中的分子振动之​​间可以实现VSC。为此,我们进行了近极极化的干涉法,表明VSC导致其分散体中具有明显的抗跨区域的繁殖混合模式的形成,在其分散体中,发现具有负基组速度的繁殖。数值计算可以预测纳米薄的分子层和几层VDW材料中的PPS的VSC,这可能使传播PPS成为超敏感的片上光谱和强耦合实验的有前途的平台。

Phonon polaritons (PPs) in van der Waals (vdW) materials can strongly enhance light-matter interactions at mid-infrared frequencies, owing to their extreme infrared field confinement and long lifetimes. PPs thus bear potential for achieving vibrational strong coupling (VSC) with molecules. Although the onset of VSC has recently been observed spectroscopically with PP nanoresonators, no experiments so far have resolved VSC in real space and with propagating modes in unstructured layers. Here, we demonstrate by real-space nanoimaging that VSC can be achieved between propagating PPs in thin vdW crystals (specifically h-BN) and molecular vibrations in adjacent thin molecular layers. To that end, we performed near-field polariton interferometry, showing that VSC 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 VSC for nanometer-thin molecular layers and PPs in few-layer vdW materials, which could make propagating PPs a promising platform for ultra-sensitive on-chip spectroscopy and strong coupling experiments.

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