论文标题

观察与纳米纤维偶联原子的两光子兔振荡相关的振荡性拉曼增益

Observation of oscillatory Raman gain associated with two-photon Rabi oscillations of nanofiber-coupled atoms

论文作者

Liedl, Christian, Pucher, Sebastian, Schneeweiss, Philipp, Yatsenko, Leonid P., Rauschenbeutel, Arno

论文摘要

具有$λ$ -Type级别结构的量子发射器可实现量子科学技术中的许多协议和应用。因此,了解和控制其动力学是量子光学的中心研究主题之一。在这里,我们在两个剖宫产原子的两个接地状态之间驱动了两光鼠狂犬病振荡,并观察到相关的振荡性拉曼增益和吸收,这是由于两个驱动场之间的原子介导的相干光子交换而造成的。这些原子通过基于纳米纤维的光学接口有效且均匀地与探针场结合。我们研究了两光鼠狂犬病频率对系统参数的依赖性,并观察探针传输频谱中的自动镇分裂。除了阐明两光子狂欢振荡的基本过程外,我们的方法还可以用于研究两个驱动场之间的(量子)相关性以及电磁诱导的透明度的动态建立。

Quantum emitters with a $Λ$-type level structure enable numerous protocols and applications in quantum science and technology. Understanding and controlling their dynamics is, therefore, one of the central research topics in quantum optics. Here, we drive two-photon Rabi oscillations between the two ground states of cesium atoms and observe the associated oscillatory Raman gain and absorption that stems from the atom-mediated coherent photon exchange between the two drive fields. The atoms are efficiently and homogeneously coupled with the probe field by means of a nanofiber-based optical interface. We study the dependence of the two-photon Rabi frequency on the system parameters and observe Autler-Townes splitting in the probe transmission spectrum. Beyond shedding light on the fundamental processes underlying two-photon Rabi oscillations, our method could also be used to investigate (quantum) correlations between the two drive fields as well as the dynamical establishment of electromagnetically induced transparency.

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