论文标题

通过刺激的布里鲁因在手性光子晶体纤维中刺激的布里鲁因散射的非旋转涡流隔离器

Nonreciprocal vortex isolator by stimulated Brillouin scattering in chiral photonic crystal fibre

论文作者

Zeng, Xinglin, Russell, Philip St. J., Wolff, Christian, Frosz, Michael H., Wong, Gordon K. L., Stiller, Birgit

论文摘要

光学的非循环性破坏了前向和向后传播光波之间的对称性,在光子系统中已变得至关重要,并启用了许多关键设备,例如光学隔离器,循环器和光学路由器。大多数常规的光学隔离器都涉及磁化材料,但是基于光学非线性,光机电诱导的透明度和刺激的布里鲁因散射(SBS)的设备也已被证明。但是,到目前为止,它们仅用于线性或随机两极化的类似LP01的基本模式。在这里,我们报告了基于手性光子晶体纤维中拓扑选择的SBS的光驱动的非偏射隔离器,用于光学涡流模式。通过调整控制信号的频率,可以将设备重新配置为放大器或隔离器。实验结果表明,使用SBS在基本模式隔离器中,在最新的涡流中分离了22 dB。这种独特的设备可能会在光学通信,光纤激光器,量子信息处理和光学镊子中找到应用程序。

Optical non-reciprocity, which breaks the symmetry between forward and backward propagating optical waves, has become vital in photonic systems and enables many key devices, such as optical isolators, circulators and optical routers. Most conventional optical isolators involve magneto-optic materials, but devices based on optical nonlinearities, optomechanically induced transparency and stimulated Brillouin scattering (SBS) have also been demonstrated. So far, however, they have only been implemented for linearly or randomly polarized LP01-like fundamental modes. Here we report a light-driven nonreciprocal isolator for optical vortex modes, based on topology-selective SBS in chiral photonic crystal fibre. The device can be reconfigured as an amplifier or an isolator by adjusting the frequency of the control signal. The experimental results show vortex isolation of 22 dB, which is at the state-of-the-art in fundamental mode isolators using SBS. This unique device may find applications in optical communications, fibre lasers, quantum information processing and optical tweezers.

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