论文标题

在线性方面以外的一维原子链中集体状态的光学控制

Optical control of collective states in 1D ordered atomic chains beyond the linear regime

论文作者

Fayard, Nikos, Ferrier-Barbut, Igor, Browaeys, Antoine, Greffet, Jean-Jacques

论文摘要

在需要开发高效的原子 - 光子界面的需求的驱动下,最近的努力提议用大量的冷原子取代腔,这些冷原子可以支持次光或超级集体国家。实际上,次值状态与辐射脱钩,这构成了大多数应用的障碍。在这项工作中,我们从理论上研究了一种协议,该协议使用由V形构型中的N三级原子组成的一个维(1D)链绕过此限制。在整个协议中,链条表现为时变的超材料:在光谱和空间控制模式下实现吸收,存储和按需发射。考虑到原子的量子性质,我们建立了线性状态与非线性状态之间的边界。在非线性政权中,我们证明了双方兴奋的状态可以连贯地从上级降低到次值状态,从而为其纠缠的光学表征开辟了道路。

Driven by the need to develop efficient atom-photon interfaces, recent efforts have proposed replacing cavities by large arrays of cold atoms that can support subradiant or superradiant collective states. In practice, subradiant states are decoupled from radiation, which constitutes a hurdle to most applications. In this work, we study theoretically a protocol that bypasses this limit using a one dimensional (1D) chain composed of N three-level atoms in a V-shaped configuration. Throughout the protocol, the chain behaves as a time-varying metamaterial: enabling absorption, storage and on-demand emission in a spectrally and spatially controlled mode. Taking into account the quantum nature of atoms, we establish the boundary between the linear regime and the nonlinear regime. In the nonlinear regime, we demonstrate that doubly-excited states can be coherently transferred from superradiant to subradiant states, opening the way to the optical characterization of their entanglement.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源