论文标题

强烈的光耦合下增强的激发能量传递:多尺度分子动力学模拟的见解

Enhanced Excitation Energy Transfer under Strong Light-Matter Coupling: Insights from Multi-Scale Molecular Dynamics Simulations

论文作者

Sokolovskii, Ilia, Tichauer, Ruth H., Morozov, Dmitry, Feist, Johannes, Groenhof, Gerrit

论文摘要

激子的传输可以在强耦合方向上增强,在这种耦合方案中,激子与密闭的光模式杂交以形成极性。由于极性子具有群体速度,因此它们的传播应具有弹道和远程。然而,实验表明,有机极化子以扩散的方式传播,并且比其组速度更慢。在这里,我们通过在Fabry-Pérot腔中的若丹明分子的分子动力学模拟来解决这一争议。我们的结果表明,北极星的繁殖受到空腔寿命的限制,并且由于极化状态之间的可逆种群转移,这些状态在弹道速度下以群体速度传播,而固定的黑色状态则是扩散的。此外,由于长寿的黑暗状态会瞬时捕获激发,因此在固有的polariton寿命以外的时间尺度上观察到传播。这些见解不仅有助于更好地理解和解释实验性观察,而且还为分子 - 腔体系统的合理设计铺平了道路,以进行相干的激子运输。

Exciton transport can be enhanced in the strong coupling regime where excitons hybridise with confined light modes to form polaritons. Because polaritons have group velocity, their propagation should be ballistic and long-ranged. However, experiments indicate that organic polaritons propagate in a diffusive manner and more slowly than their group velocity. Here, we resolve this controversy by means of molecular dynamics simulations of Rhodamine molecules in a Fabry-Pérot cavity. Our results suggest that polariton propagation is limited by the cavity lifetime and appears diffusive due to reversible population transfers between polaritonic states that propagate ballistically at their group velocity, and dark states that are stationary. Furthermore, because long-lived dark states transiently trap the excitation, propagation is observed on timescales beyond the intrinsic polariton lifetime. These insights not only help to better understand and interpret experimental observations, but also pave the way towards rational design of molecule-cavity systems for coherent exciton transport.

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