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Fabrication and characterization of erbium-doped toroidal microcavity lasers

机译:掺to环形微腔激光器的制备与表征

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摘要

Erbium-doped SiO2 toroidal microcavity lasers are fabricated on a Si substrate using a combination of optical lithography, etching, Er ion implantation, and CO2 laser reflow. Erbium is either preimplanted in the SiO2 base material or postimplanted into a fully fabricated microtoroid. Three-dimensional infrared confocal photoluminescence spectroscopy imaging is used to determine the spatial distribution of optically active Er ions in the two types of microtoroids, and distinct differences are found. Microprobe Rutherford backscattering spectrometry indicates that no macroscopic Er diffusion occurs during the laser reflow for preimplanted microtoroids. From the measured Er doping profiles and calculated optical mode distributions the overlap factor between the Er distribution and mode profile is calculated: Gamma=0.066 and Gamma=0.02 for postimplanted and preimplanted microtoroids, respectively. Single and multimode lasing around 1.5 µm is observed for both types of microtoroids, with the lowest lasing threshold (4.5 µW) observed for the preimplanted microtoroids, which possess the smallest mode volume. When excited in the proper geometry, a clear mode spectrum is observed superimposed on the Er spontaneous emission spectrum. This result indicates the coupling of Er ions to cavity modes.
机译:a掺杂的SiO2环形微腔激光器是通过光学光刻,蚀刻,Er离子注入和CO2激光回流焊的组合在Si基板上制造的。 either可以预先植入SiO2基材中,也可以后期植入完整的微环中。使用三维红外共聚焦光致发光光谱成像来确定两种微环型中光学活性Er离子的空间分布,并且发现了明显的差异。 Microprobe Rutherford背散射光谱法表明,对于预植入的微环型激光器,在激光回流过程中没有发生宏观的Er扩散。根据测得的Er掺杂分布和计算出的光学模态分布,可以计算出Er分布与模态分布之间的重叠因子:植入后和植入前的微环面分别为Gamma = 0.066和Gamma = 0.02。两种类型的微环型激光器都观察到约1.5 µm的单模和多模激光,而具有最小模量的预植入微环型激光器观察到最低的激光阈值(4.5 µW)。当以适当的几何形状激发时,观察到清晰的模态光谱叠加在Er自发发射光谱上。该结果表明Er离子与腔模的耦合。

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