论文标题
用基于原子的两光子干涉仪调整光子统计
Tailoring photon statistics with an atom-based two-photon interferometer
论文作者
论文摘要
控制光的光子统计数据对于量子科学和技术至关重要。最近,我们证明了将共振激光传递到两级发射器的集合可以导致单个光子或多余的光子对流。这种转换是由于传输和不连贯散射的两光子分量之间的量子干扰所致。在这里,使用原子介质的分散体,我们积极控制这两个组分之间的相对量子相。因此,我们实现了一个可调的两光子干涉仪,并观察到归一化光子重合率的干扰条纹,从抗刚开始到束缚。除了可以调节不连贯和相干光之间的量子阶段并决定光子统计数据之间的基本见解之外,我们的结果还可以发展出新的量子光源的发展。
Controlling the photon statistics of light is paramount for quantum science and technologies. Recently, we demonstrated that transmitting resonant laser light past an ensemble of two-level emitters can result in a stream of single photons or excess photon pairs. This transformation is due to quantum interference between the transmitted and incoherently scattered two-photon component. Here, using the dispersion of the atomic medium, we actively control the relative quantum phase between these two components. We thereby realize a tunable two-photon interferometer and observe interference fringes in the normalized photon coincidence rate, varying from antibunching to bunching. Beyond the fundamental insight that the quantum phase between incoherent and coherent light can be tuned and dictates photon statistics, our results lend themselves to the development of novel quantum light sources.