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Quantum-Dot Photonic-Crystal Surface-Emitting Lasers with Bottom Distributed Bragg Reflector

机译:Quantum-Dot光子晶体表面发射激光器,具有底部分布式布拉格反射器

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摘要

Quantum-dot (QD) photonic-crystal (PC) surface-emitting laser (SEL) devices with bottom distributed Bragg reflector (DBR) were fabricated based on vertical-cavity SEL structure with top DBR completely removed. Two-dimensional (2D) PCs were deeply etched through QD multilayers to yield strong diffraction coupling. Room-temperature optically pumped lasing emissions at 1194 nm and 1296 nm were demonstrated for two lattice periods of 360 nm and 395 nm, respectively. Two lasing wavelengths separated over 100 nm; however, there were less than two times difference in threshold power densities while slope efficiencies were comparable. The unique spectral gain characteristics of QDs were considered in interpretation of gain-cavity detuning. Moreover, simulation revealed the sub-cavity should be designed so that its resonant wavelength is in phase with lasing wavelength.
机译:Quantum-Dot(QD)光子晶体(PC)具有底部分布式布拉格反射器(DBR)的表面发射激光器(SEL)器件基于垂直腔SEL结构,完全除去顶部DBR。通过QD多层深度蚀刻二维(2D)PC以产生强大的衍射偶联。室温光学泵浦在1194nm和1296nm处的激光发射分别为360nm和395nm的两个晶格周期。两个激光波长分离超过100nm;然而,阈值功率密度差异的差异差异不到两倍,而坡度效率则相当。在增益腔失血的解释中考虑了QD的独特光谱增益特性。此外,仿真揭示了子腔的设计,使得其谐振波长与激光波长相位。

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  • 作者

    Ming-Yang Hsu; Gray Lin;

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  • 年度 2018
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  • 原文格式 PDF
  • 正文语种 eng
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