【2h】

Lifetime dynamics of plasmons in the few-atom limit

机译:几个原子极限内等离激元的生命动力学

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摘要

Polycyclic aromatic hydrocarbon (PAH) molecules are essentially graphene in the subnanometer limit, typically consisting of 50 or fewer atoms. With the addition or removal of a single electron, these molecules can support molecular plasmon (collective) resonances in the visible region of the spectrum. Here, we probe the plasmon dynamics in these quantum systems by measuring the excited-state lifetime of three negatively charged PAH molecules: anthanthrene, benzo[ghi]perylene, and perylene. In contrast to the molecules in their neutral state, these three systems exhibit far more rapid decay dynamics due to the deexcitation of multiple electron–hole pairs through molecular plasmon “dephasing” and vibrational relaxation. This study provides a look into the distinction between collective and single-electron excitation dynamics in the purely quantum limit and introduces a conceptual framework with which to visualize molecular plasmon decay.
机译:多环芳烃(PAH)分子基本上是亚纳米级的石墨烯,通常由50个或更少的原子组成。通过添加或除去单个电子,这些分子可以在光谱的可见光区域支持分子等离振子(集体)共振。在这里,我们通过测量三个带负电的PAH分子(蒽,苯并g和and)的激发态寿命来研究这些量子系统中的等离激元动力学。与处于中性状态的分子相反,这三个系统由于通过分子等离激元“移相”和振动弛豫而消除了多个电子-空穴对,因此具有更快的衰减动力学。这项研究提供了纯量子极限中集体和单电子激发动力学之间的区别,并介绍了一个可视化分子等离子体激元衰变的概念框架。

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