论文标题
固态中的无多重纠缠光子源
A multipair-free source of entangled photons in the solid state
论文作者
论文摘要
多余的多光子发射通常会降低非古典光源产生的光子的纠缠程度,进而阻碍其在量子信息科学和技术中的剥削。量子发射器有可能克服这一障碍,但是,到目前为止,多光子发射对纠缠质量的影响从未详细解决。在这里,我们使用来自谐振驱动的量子点的光子对来应对这一挑战,并比较量子层造影术和二阶相干性测量结果与激发能力的函数。我们观察到,相对(绝对)多光子发射概率低至$ p_m =(5.6 \ pm 0.6)10^{ - 4} $($ p_2 =(1.5 \ pm 0.3)10^{ - 6} $,在最大源亮度上,值导致对结构范围的可忽视效应。与纠缠光子的概率来源形成鲜明对比的是,我们还证明了多光子发射概率和纠缠程度实际上与多个狂犬循环的激发能力保持不变,尽管我们显然观察到了二阶相干测量的振荡。我们的结果是通过理论模型来解释的,我们开发的是为了估计两光子密度矩阵中实际的多光子贡献,强调量子点可以被视为固态处于固态下的无多元纠缠光子的源。
Unwanted multiphoton emission commonly reduces the degree of entanglement of photons generated by non-classical light sources and, in turn, hampers their exploitation in quantum information science and technology. Quantum emitters have the potential to overcome this hurdle but, so far, the effect of multiphoton emission on the quality of entanglement has never been addressed in detail. Here, we tackle this challenge using photon pairs from a resonantly-driven quantum dot and comparing quantum state tomography and second-order coherence measurements as a function of the excitation power. We observe that the relative (absolute) multiphoton emission probability is as low as $p_m= (5.6 \pm 0.6)10^{-4}$ ($p_2= (1.5 \pm 0.3)10^{-6}$) at the maximum source brightness, values that lead to a negligible effect on the degree of entanglement. In stark contrast with probabilistic sources of entangled photons, we also demonstrate that the multiphoton emission probability and the degree of entanglement remain practically unchanged against the excitation power for multiple Rabi cycles, despite we clearly observe oscillations in the second-order coherence measurements. Our results, explained by a theoretical model that we develop to estimate the actual multiphoton contribution in the two-photon density matrix, highlight that quantum dots can be regarded as a multipair-free source of entangled photons in the solid state.