论文标题
在腔内与外部发射器合奏的混乱,局部放松和集体行为之间的相互作用
The Interplay between Disorder, Local Relaxation and Collective Behaviors for an ensemble of emitters outside vs inside cavity
论文作者
论文摘要
使用简单的有效哈密顿量对集体光学反应与分子静态和动态障碍之间的相互作用进行研究,以在单态腔体内和外部组成两级发射器。我们通过随机调节分子过渡频率以及发射器与电磁场之间的耦合来对环境障碍进行建模。我们还考虑了分子间相互作用和定向障碍的影响。我们研究了这些影响如何导致稳态吸收(腔外),透射光谱(内部)和局部分子过程(例如单分子反应)的产率的新特征。在空腔之外,集体行为在稳态吸收,发射光谱和局部化学产量的线宽中表现出来。然而,在腔体内,集体行为主要决定了狂犬病的分裂。还研究了定向障碍下分子间相互作用的影响。在大多数情况下,对于所有类型的疾病,如果我们增加障碍,我们会发现分子反应的集体性质降低(较小的有效n),因此,狂犬分裂收缩发生在定向疾病中。此外,我们发现静态疾病对集体行为比动态障碍更具破坏性。
The interplay between collective optical response and molecular static and dynamic disorder is studied using simple effective Hamiltonians for an ensemble of two-level emitters inside and outside a single-mode cavity. We model environmental disorder by randomly modulating the molecular transition frequencies and the coupling between the emitters and the electromagnetic field. We also consider effects of intermolecular interactions and orientational disorder. We investigate how these effects lead to new features in the steady state absorption (outside the cavity), transmission spectra (inside the cavity) and the yield of local molecular processes such as a unimolecular reaction. Outside the cavity, the collective behavior is manifested in the linewidth of the steady state absorption, the emission spectrum, and the local chemical yield. Inside the cavity, however, the collective behavior primarily determines the Rabi splitting. Effects of intermolecular interactions under orientational disorder are also studied. For the most part, for all types of disorder, if we increase disorder, we find a reduction in the collective nature of the molecular response (smaller effective N), and therefore, the Rabi splitting contraction occurs with orientational disorder. Moreover, we find that static disorder is more destructive to collective behavior than dynamic disorder.