论文标题
疾病与集体相干响应之间的相互作用:时间域中的超高和光谱运动变窄
Interplay Between Disorder and Collective Coherent Response: Superradiance and Spectral Motional Narrowing in the Time Domain
论文作者
论文摘要
静态和动态障碍与分子集合中的集体光学反应之间的相互作用是纳米质和纳米光子分子系统的重要特征。在这里,我们研究了在环境障碍的影响下,量子发射器的分子集合的合作上级反应,包括不均匀的拓宽(由于分子过渡频率的静态随机分布引起)和运动变窄(如这些激发能的随机调节所引起的)。不均匀拓宽的影响是破坏集体分子激发的连贯性并抑制超级发射。但是,分子激发能的快速随机调节可以有效地恢复量子发射器的连贯性并导致超级发射的恢复,这是运动变窄的意外表现。为了通过异谐合入射脉冲引起的光散射过程,随机调节长时间在平均激发能量下导致非弹性荧光发射,并表明动态障碍效应实际上可以导致分子集合的集体激发。
The interplay between static and dynamic disorder and collective optical response in molecular ensembles is an important characteristic of nanoplasmonic and nanophotonic molecular systems. Here we investigate the cooperative superradiant response of a molecular ensemble of quantum emitters under the influence of environmental disorder, including inhomogeneous broadening (as induced by static random distribution of the molecular transition frequencies) and motional narrowing (as induced by stochastic modulation of these excitation energies). The effect of inhomogeneous broadening is to destroy the coherence of the collective molecular excitation and suppress superradiant emission. However, fast stochastic modulation of the molecular excitation energy can effectively restore the coherence of the quantum emitters and lead to a recovery of superradiant emission, which is an unexpected manifestation of motional narrowing. For a light scattering process as induced by an off-resonant incident pulse, stochastic modulation leads to inelastic fluorescence emission at the average excitation energy at long times and suggests that dynamic disorder effects can actually lead to collective excitation of the molecular ensemble.