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Symmetry breaking for transmission in a photonic waveguide coupled with two off-channel nonlinear defects

机译:光子波导中传输的对称性破缺与两个离信道非线性缺陷耦合

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摘要

We consider light transmission in a two-dimensional (2D) photonic crystal waveguide coupled with two identical nonlinear defects positioned symmetrically aside the waveguide. With the coupled mode theory, we show three scenarios for the transmission. The first one inherits the linear case and preserves the symmetry. In the second scenario, the symmetry is broken because of different light intensities at the defects. In the third scenario, the intensities at the defects are equal but phases of complex amplitudes are different. That results in a vortical power flow between the defects similar to the dc Josephson effect if the input power over the waveguide is applied and the defects are coupled. All of these phenomena agree well with computations based on an expansion of the electromagnetic field into optimally adapted photonic Wannier functions in a 2D photonic crystal.
机译:我们考虑在二维(2D)光子晶体波导中的光传输,该光子与在波导中对称放置的两个相同的非线性缺陷耦合。利用耦合模式理论,我们展示了三种传输场景。第一个继承线性情况并保留对称性。在第二种情况下,由于缺陷处的光强度不同,对称性被破坏了。在第三种情况下,缺陷处的强度相等,但复振幅的相位不同。如果施加了波导上的输入功率并且耦合了缺陷,则在缺陷之间会产生类似于直流约瑟夫森效应的涡流能量流。所有这些现象都与基于将电磁场扩展为2D光子晶体中的最佳自适应光子Wannier函数的计算非常吻合。

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