论文标题

具有控制障碍的原子合奏中受腔保护极化子的光谱工程

Spectral Engineering of Cavity-Protected Polaritons in an Atomic Ensemble with Controlled Disorder

论文作者

Baghdad, Mohamed, Bourdel, Pierre-Antoine, Schwartz, Sylvain, Ferri, Francesco, Reichel, Jakob, Long, Romain

论文摘要

$ n $量子发射器的范式与单个空腔模式结合在一起,出现在许多情况下,从量子技术到偏振化学。相同发射器的理想情况是用对称状态进行优雅建模的,并以极化子的方式理解。在实际相关的频率分布的情况下,此简单的图片会崩溃,并出现了新的和令人惊讶的功能。在这里,我们利用强烈耦合的冷原子系统中的高度控制,首次可以调节耦合强度和频率不均匀性之间的比率。我们直接观察到仅具有两个共振的偏光元素的转变。如“腔保护”的背景下,后者比频率分布要窄得多。我们发现,耦合光态态的光子重量的浓度是该过渡的关键参数,并证明了基于传输计数统计的简单参数为此理论数量提供了强大的实验代理。此外,我们实现了动态调制的塔维斯巡洋舰模型,以产生保护疾病的狭窄北极共振的梳子,并可能应用于量子网络。

The paradigm of $N$ quantum emitters coupled to a single cavity mode appears in many situations ranging from quantum technologies to polaritonic chemistry. The ideal case of identical emitters is elegantly modeled in terms of symmetric states, and understood in terms of polaritons. In the practically relevant case of an inhomogeneous frequency distribution, this simple picture breaks down and new and surprising features appear. Here we leverage the high degree of control in a strongly coupled cold atom system, where for the first time the ratio between coupling strength and frequency inhomogeneities can be tuned. We directly observe the transition from a disordered regime to a polaritonic one with only two resonances. The latter are much narrower than the frequency distribution, as predicted in the context of ''cavity protection''. We find that the concentration of the photonic weight of the coupled light-matter states is a key parameter for this transition, and demonstrate that a simple parameter based on statistics of transmission count spectra provides a robust experimental proxy for this theoretical quantity. Moreover, we realize a dynamically modulated Tavis-Cumming model to produce a comb of narrow polariton resonances protected from the disorder, with potential applications to quantum networks.

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