Wright Adam D, Nelson Jane C, Weichman Marissa L
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, United States.
J Am Chem Soc. 2023 Mar 15;145(10):5982-5987. doi: 10.1021/jacs.3c00126. Epub 2023 Mar 3.
Polaritonic states arise when a bright optical transition of a molecular ensemble is resonantly matched to an optical cavity mode frequency. Here, we lay the groundwork to study the behavior of polaritons in clean, isolated systems by establishing a new platform for vibrational strong coupling in gas-phase molecules. We access the strong coupling regime in an intracavity cryogenic buffer gas cell optimized for the preparation of simultaneously cold and dense ensembles and report a proof-of-principle demonstration in gas-phase methane. We strongly cavity-couple individual rovibrational transitions and probe a range of coupling strengths and detunings. We reproduce our findings with classical cavity transmission simulations in the presence of strong intracavity absorbers. This infrastructure will provide a new testbed for benchmark studies of cavity-altered chemistry.
当分子系综的明亮光学跃迁与光学腔模频率发生共振匹配时,就会产生极化激元态。在此,我们通过建立一个用于气相分子振动强耦合的新平台,为研究清洁、孤立系统中极化激元的行为奠定基础。我们在一个为同时制备冷且密集的系综而优化的腔内低温缓冲气体池中进入强耦合区域,并在气相甲烷中进行了原理验证演示。我们将单个振转跃迁与腔进行强耦合,并探测了一系列耦合强度和失谐情况。我们在存在强腔内吸收体的情况下,通过经典腔传输模拟重现了我们的研究结果。这一基础设施将为腔改变化学的基准研究提供一个新的试验台。