论文标题
在一系列有损耗的偶极子链中,具有无序的传输,与腔光子强烈耦合
Disorder-enhanced transport in a chain of lossy dipoles strongly coupled to cavity photons
论文作者
论文摘要
我们通过考虑通过微观衍生的哈密顿式的无序偶极子与多模光腔耦合的一维损失偶极子,研究疾病与光 - 物质耦合之间的相互作用。这种托管极化激发的系统可以在强大的光耦合下实验在各种平台中实现。通过分析系统的特征光谱和驱动的传输特性,我们发现在强耦合方案中,增加障碍会导致几乎没有偶联的黑暗状态以获取光子部分,从而允许它们继承极化式远程远程运输特性。至关重要的是,我们表明,当被考虑的偶极子易于损失时,这种具有疾病增强的运输机制越来越明显。
We study the interplay between disorder and light-matter coupling by considering a disordered one-dimensional chain of lossy dipoles coupled to a multimode optical cavity, through a microscopically derived Hamiltonian. Such a system, hosting polaritonic excitations, may be realized experimentally in a wide range of platforms under strong light-matter coupling. By analyzing both the eigenspectrum and the driven-dissipative transport properties of our system, we find that in the strong-coupling regime, increasing disorder leads almost uncoupled dark states to acquire a photonic part, allowing them to inherit polaritonic long-range transport characteristics. Crucially, we show that this disorder-enhanced transport mechanism is increasingly noticeable when the considered dipoles are lossier.