论文标题
级联发射器中对纠缠和先驱的机械理解
Mechanistic Understanding of Entanglement and Heralding in Cascade Emitters
论文作者
论文摘要
半导体量子光源有利于广泛的量子光子任务,尤其是量子计算和量子信息处理。在这里,我们从理论上研究了量子发射器(QE)的特性,它是具有实用量子特性的纠缠光子的来源,包括按需单个光子的先驱。通过理论分析,我们表征了级联反应器的特性,包括(1)单光子纯度的研究,(2)研究一阶和二阶相关函数,以及(3)确定纠缠光子的Schmidt数量。级联发射器的Schmidt数量得出的分析表达表明,对第一光子和第二个光子的衰减速率的比率有很强的依赖性。研究了产生的两光子的关节频谱密度,我们展示了如何与预示的单个光子的产生相连的纯度和纠缠程度。 我们的模型进一步开发,以包括极化效应,精细的结构分裂以及激子和Biexciton发射之间的发射延迟。扩展模型提供了有关纠缠光子生产的潜在机制的更多详细信息,并为操纵系统和表征输出光子的纯度提供了其他自由度。理论研究和分析为按需单光子的实验设计和工程提供了基石。
Semiconductor quantum light sources are favorable for a wide range of quantum photonic tasks, particularly quantum computing and quantum information processing. Here we theoretically investigate the properties of quantum emitters (QEs) as a source of entangled photons with practical quantum properties including heralding of on-demand single photons. Through the theoretical analysis, we characterize the properties of a cascade (biexciton) emitter, including (1) studies of single-photon purity, (2) investigating the first- and second- order correlation functions, and (3) determining the Schmidt number of the entangled photons. The analytical expression derived for the Schmidt number of the cascade emitters reveals a strong dependence on the ratio of decay rates of the first and second photons. Looking into the joint spectral density of the generated biphotons, we show how the purity and the degree of entanglement are connected to the production of heralded single photons. Our model is further developed to include polarization effects, fine structure splitting, and the emission delay between the exciton and biexciton emission. The extended model offers more details about the underlying mechanism of entangled photon production, and it provides additional degrees of freedom for manipulating the system and characterizing purity of the output photon. The theoretical investigations and the analysis provide a cornerstone for the experimental design and engineering of on-demand single photons.