论文标题

Kerr型非线性光学隔离器绕过动态互惠

Kerr-type nonlinear optical isolators bypassing dynamic reciprocity

论文作者

Hu, Yiqi, Qi, Yihong, You, Yu, Zhang, Shicheng, Lin, Gongwei, Li, Xiaolin, Gong, Jiangbin, Gong, Shangqing, Niu, Yueping

论文摘要

无磁光学隔离器是实现集成光学系统的关键组件。被动非线性光学隔离器的基本物理学不仅是在不需要任何外部偏见的情况下打破洛伦兹的互惠。实际上,发现Kerr型非线性光学隔离器运行的一个主要障碍是所谓的动态互惠,其中严重的结果是在存在正向强信号的情况下无法隔离向后信号。在这项工作中,我们提倡速度选择性非线性的新颖概念绕过这种动态互惠。在不对称腔中,使用具有温暖的Rubidium原子的原则平台,在存在强向前信号的情况下,我们在实验中实现了向后信号的分离,实验观察与我们的理论模拟一致。因此,这项工作已迈出了运行Kerr型被动光学隔离器的重要一步。

Magnetic-free optical isolators are critical components for the realization of integrated optical systems. The underlying physics of passive nonlinear optical isolators is not solely about breaking the Lorentz reciprocity without requiring any external bias. Indeed, one major obstacle to the operation of Kerr-type nonlinear optical isolators was found to be the so-called dynamic reciprocity, of which the serious outcome is that a backward signal cannot be isolated in the presence of a forward strong signal. In this work, we advocate the novel concept of velocity-selective nonlinearity to bypass such dynamic reciprocity. Using a proof-of-principle platform with warm rubidium atoms in an asymmetric cavity, we experimentally achieve the isolation of a backward signal in the presence of a strong forward signal, with experimental observations in agreement with our theoretical simulations. This work has thus made one essential step towards functioning Kerr-type passive optical isolators.

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