首页> 外文期刊>Optics Communications: A Journal Devoted to the Rapid Publication of Short Contributions in the Field of Optics and Interaction of Light with Matter >A proposal for low cross-talk square-lattice photonic crystal waveguide intersection utilizing the symmetry of waveguide modes
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A proposal for low cross-talk square-lattice photonic crystal waveguide intersection utilizing the symmetry of waveguide modes

机译:利用波导模式对称性的低串扰方格光子晶体波导交叉点的建议

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摘要

We propose an approach to construct waveguide intersections with broad bandwidth and low cross-talk for square-lattice photonic crystals, by utilizing a vanishing overlap of the propagation modes in the waveguides created by defects which support dipole-like defect modes. The finite-difference time-domain method is used to simulate the waveguide intersection created in the two-dimensional square-lattice photonic crystals. Over a bandwidth of 30 nm with the center wavelength at 1300 nm, transmission efficiency above 90percent is obtained with cross-talk below -30 dB. Especially, we demonstrate the transmission of a 500-fs pulse at 1.3 (mu)m through the intersection, and the pulse after transmission shows very little distortion while the cross-talk remains at low level meantime.
机译:我们提出了一种方法,该方法通过利用由支持偶极子缺陷模式的缺陷所产生的波导中的传播模式消失,来为方晶格光子晶体构造具有宽带宽和低串扰的波导相交点。时域有限差分法用于模拟在二维方格光子晶体中产生的波导相交。在中心波长为1300 nm的30 nm带宽上,串扰低于-30 dB时可获得90%以上的传输效率。尤其是,我们展示了通过交叉口传输1.3 µm处的500-fs脉冲,传输后的脉冲几乎没有失真,而串扰同时保持在低电平。

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