论文标题

在室温下,Photoswitch-Nanoantennas中分子极化子的超快崩溃

Ultrafast collapse of molecular polaritons in photoswitch-nanoantennas at room temperature

论文作者

Kuttruff, Joel, Romanelli, Marco, Pedrueza-Villalmanzo, Esteban, Allerbeck, Jonas, Fregoni, Jacopo, Saavedra-Becerril, Valeria, Andréasson, Joakim, Brida, Daniele, Dmitriev, Alexandre, Corni, Stefano, Maccaferri, Nicolò

论文摘要

分子极性子是当分子过渡与谐振器中的光子强烈相互作用时出现的杂化光含量。在光学频率下,这种相互作用解锁了纳米级探索和控制新化学现象的方法。然而,在超快时间尺度上实现这种控制是一个突出的挑战,因为它需要深入了解统一耦合分子激发和纳米固定的电磁场的动力学。在这里,我们研究了集体极化状态的动力学,该动力学通过将分子照片开关与光学各向异性等离激元纳米annoantennas耦合实现。泵探针实验揭示了极秒脉冲激发在室温下触发的单分子过渡的超快崩溃。通过实验和量子机械建模的协同组合,我们表明该系统的响应受分子内动力学的控制,相对于未受干扰的激发分子弛豫对基态的不受干扰的激发分子弛豫的速度更快。

Molecular polaritons are hybrid light-matter states that emerge when a molecular transition strongly interacts with photons in a resonator. At optical frequencies, this interaction unlocks a way to explore and control new chemical phenomena at the nanoscale. Achieving such a control at ultrafast timescales, however, is an outstanding challenge, as it requires a deep understanding of the dynamics of the collectively coupled molecular excitation and the nanoconfined electromagnetic fields. Here, we investigate the dynamics of collective polariton states, realized by coupling molecular photoswitches to optically anisotropic plasmonic nanoantennas. Pump-probe experiments reveal an ultrafast collapse of polaritons to a single-molecule transition triggered by femtosecond-pulse excitation at room-temperature. Through a synergistic combination of experiments and quantum mechanical modelling, we show that the response of the system is governed by intramolecular dynamics, occurring one order of magnitude faster with respect to the unperturbed excited molecule relaxation to the ground state.

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