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Modal analysis and engineering on InP-based two-dimensional photonic-crystal microlasers on a Si wafer

机译:Si晶片上基于INP的二维光子晶体微溶剂的模态分析与工程

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We report results on hexagonal-shaped microlasers formed from two-dimensional photonic crystals (PCs) using InP-based materials transferred and bonded onto SiO2/ Si wafers. Two types of hexagonal cavities are investigated : single defect (one hole missing) cavities, so-called H1 cavities (1 Μm in diameter) and two holes missing per side H2 cavities (2 Μm in diameter). Their optical properties are analyzed using photoluminescence experiments, and plane wave method simulations have been performed for comparison. High Q modes (∼600/700) have been measured and they have been shown to enable laser effect at room temperature, under pulsed optical pumping (15% duty cycle and 25-ns pulsewidth). The study of these efficient mode characteristics gives guidance for further improvement of the operation conditions of PC lasers, such as the reduction of the threshold pumping power.
机译:我们在使用转移和粘合到SiO 2 / Si晶片上的基于INP基材料,从二维光子晶体(PC)形成的六角形微加液的结果报告。研究了两种类型的六边形腔:单缺陷(一个孔缺失)空腔,所谓的H1腔(直径为1μm)和每侧H2腔(直径为2μm的两个孔)。使用光致发光实验分析它们的光学性质,并进行了平面波方法模拟进行比较。已经测量了高Q模式(~600 / 700),并且已经显示它们在室温下使激光效果能够在脉冲光学泵浦(15%占空比和25-ns脉冲宽)下。对这些有效模式特征的研究提供了进一步改进PC激光器的操作条件的指导,例如阈值泵浦功率的降低。

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