论文标题

许多模式对腔中自动化和光化学抑制的影响

Effect of Many Modes on Self-Polarization and Photochemical Suppression in Cavities

论文作者

Hoffmann, Norah M., Lacombe, Lionel, Rubio, Angel, Maitra, Neepa T.

论文摘要

腔体修饰分子反应的标准描述通常涉及单个(谐振)模式,而实际上,量子腔支持一系列光子模式。在这里,我们证明,随着更多的光子模式的解释,物理化学现象会发生巨大变化,如腔诱导的抑制质子偶联电子转移的重要和普遍存在的过程所示。使用对光子模式的多孔径eHrenfest处理,我们发现自偏效应是必不可少的,我们介绍了自动化修饰的Born-Oppenheimer表面的概念,作为一种分析动力学的新结构。随着空腔光子模式的数量的增加,这些表面与无腔体的表面的偏差增加,以及这些表面扩大带内的光子发射与吸收之间的相互作用,导致增强的抑制作用。目前的发现是一般的,将对嵌入在空腔中的分子,纳米结构和固体的腔体驱动物理过程的描述和控制有影响。

The standard description of cavity-modified molecular reactions typically involves a single (resonant) mode, while in reality the quantum cavity supports a range of photon modes. Here we demonstrate that as more photon modes are accounted for, physico-chemical phenomena can dramatically change, as illustrated by the cavity-induced suppression of the important and ubiquitous process of proton-coupled electron-transfer. Using a multi-trajectory Ehrenfest treatment for the photon-modes, we find that self-polarization effects become essential, and we introduce the concept of self-polarization-modified Born-Oppenheimer surfaces as a new construct to analyze dynamics. As the number of cavity photon modes increases, the increasing deviation of these surfaces from the cavity-free Born-Oppenheimer surfaces, together with the interplay between photon emission and absorption inside the widening bands of these surfaces, leads to enhanced suppression. The present findings are general and will have implications for the description and control of cavity-driven physical processes of molecules, nanostructures and solids embedded in cavities.

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