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1.5 μm room-temperature emission of square-lattice photonic-crystal waveguide lasers with a single line defect

机译:具有单线缺陷的方格光子晶体波导激光器室温发射1.5μm

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摘要

Narrow waveguides consisting of a single defect-line (W1) in a square lattice photonic crystal are fabricated on InP using the substrate approach. A single-mode distributed-feedback laser emission is obtained under optical pumping at room temperature. Lasing occurs at the second folding point of the dispersion curve of the fundamental waveguide mode (wave vector k=0). The emitted wavelength ranges from 1420 to 1580 nm for a lattice period varying from 460 to 520 nm and a constant air filling factor of ~26%. The highly monomode behavior is explained using two-dimensional plane-wave models. Similar experiments conducted on triangular lattice W1 waveguides do not yield a laser emission. Three-dimensional simulations confirm that triangular lattice Wl waveguides suffer higher losses than their square homologues.
机译:使用衬底方法在InP上制造由方形晶格光子晶体中的单个缺陷线(W1)组成的窄波导。在室温下在光泵浦下获得单模分布反馈激光发射。在基本波导模式的色散曲线的第二个折叠点发生激射(波矢量k = 0)。在460至520 nm的晶格周期内,发射的波长在1420至1580 nm的范围内,恒定的空气填充率约为26%。使用二维平面波模型解释了高度单模行为。在三角形晶格W1波导上进行的类似实验不会产生激光发射。三维模拟证实,三角形格子W1波导比其正方形同系物遭受更高的损耗。

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