论文标题

声子诱导的异常量规可能在频率空间中获得光子隔离

Phonon-induced anomalous gauge potential for photonic isolation in frequency space

论文作者

Yang, Jianfan, Yuan, Luqi, Qin, Tian, Zhang, Fangxing, Chen, Yao, Jiang, Xiaoshun, Chen, Xianfeng, Fan, Shanhui, Wan, Wenjie

论文摘要

光子量规势对于在电磁场中操纵电荷中性光子(例如其对应物电子)至关重要,从而使光子学中的类似aharonov-bohm类似,并为光子隔离等关键应用铺平了道路。通常,尺度电势沿两个相反的传播路径表现出相位反转。在这里,我们在实验上证明了声子诱导的异常量规电位,在空间频率空间中具有非反向量规相,其中准阶段匹配的非线性非线性brillouin散射使这种独特的方向依赖性仪表相可实现。基于此方案,我们在频域中构建光子隔离器,允许沿频率轴的光域传播,其中光子隔离器中的相干相控制允许通过Aharonov-BOHM干涉仪完全切换方向性。此外,还说明了类似的相干控制的单向频率转换。这些结果可能为紧凑的集成解决方案提供了独特的平台,以实现芯片光学信号处理的合成维度设备。

Photonic gauge potentials are crucial for manipulating charge-neutral photons like their counterpart electrons in the electromagnetic field, allowing analogous Aharonov-Bohm effect in photonics and paving the way for critical applications like photonic isolation. Normally, a gauge potential exhibits phase inversion along two opposite propagation paths. Here we experimentally demonstrate phonon-induced anomalous gauge potentials with non-inverted gauge phases in a spatial-frequency space, where quasi-phase-matched nonlinear Brillouin scatterings enable such unique direction-dependent gauge phases. Based on this scheme, we construct photonic isolators in the frequency domain permitting nonreciprocal propagation of light along the frequency axis, where coherent phase control in the photonic isolator allows switching completely the directionality through an Aharonov-Bohm interferometer. Moreover, similar coherent controlled unidirectional frequency conversions are also illustrated. These results may offer a unique platform for a compact, integrated solution to implement synthetic-dimension devices for on-chip optical signal processing.

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