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分子谐振器与微腔模式的相干耦合。

Coherent coupling of molecular resonators with a microcavity mode.

机构信息

ISIS &icFRC, University of Strasbourg and CNRS (UMR 7006), 67000 Strasbourg, France.

IPCMS (UMR 7504) &ISIS (UMR 7006), University of Strasbourg and CNRS (UMR 7006), 67000 Strasbourg, France.

出版信息

Nat Commun. 2015 Jan 13;6:5981. doi: 10.1038/ncomms6981.

Abstract

The optical hybridization of the electronic states in strongly coupled molecule-cavity systems have revealed unique properties, such as lasing, room temperature polariton condensation and the modification of excited electronic landscapes involved in molecular isomerization. Here we show that molecular vibrational modes of the electronic ground state can also be coherently coupled with a microcavity mode at room temperature, given the low vibrational thermal occupation factors associated with molecular vibrations, and the collective coupling of a large ensemble of molecules immersed within the cavity-mode volume. This enables the enhancement of the collective Rabi-exchange rate with respect to the single-oscillator coupling strength. The possibility of inducing large shifts in the vibrational frequency of selected molecular bonds should have immediate consequences for chemistry.

摘要

在强耦合分子-腔体系中,电子态的光学杂化揭示了独特的性质,如激光、室温极化激元凝聚以及涉及分子异构化的激发电子景观的修饰。在这里,我们表明,考虑到与分子振动相关的低振动热占据因子,以及集体耦合大量浸入腔模体积内的分子,电子基态的分子振动模式也可以与室温微腔模式相干耦合。这使得集体拉比交换速率相对于单个振荡器耦合强度得到增强。诱导选定分子键的振动频率发生大位移的可能性应该会对化学产生直接影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/11e7/4308833/4de49accc2d6/ncomms6981-f1.jpg

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