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首页> 外文期刊>IEEE journal of selected topics in quantum electronics >Multistage bipolar cascade vertical-cavity surface-emitting lasers: theory and experiment
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Multistage bipolar cascade vertical-cavity surface-emitting lasers: theory and experiment

机译:多级双极级联垂直腔表面发射激光器:理论与实验

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摘要

We present an overview over our research on bipolar cascade vertical-cavity surface-emitting lasers (VCSELs) emitting at 980 nm wavelength, including the scaling properties and the influence of design variations on laser performance as well as strategies for GaAs Esaki junction optimization. We experimentally demonstrate high-performance two- and three-stage devices, the latter of which with 130% differential quantum efficiency. The derived analytical expressions for the scaling behavior are confirmed by measurement data and show a significant improvement in the steady-state as well as the dynamic performance with respect to active region stacking. From the investigated design variations, the influence of oxide apertures and active region spacing on laser performance is clearly extracted and reveals that current spreading is present in the cavity and can lead to severe limitations in optical performance. The GaAs tunnel diodes have been optimized with respect to the donor concentration and the additional incorporation of an In/sub 0.1/Ga/sub 0.9/As layer on the n/sup ++/-side, leading to a zero-bias specific resistance of about 1/spl middot/10/sup -4/ /spl Omega/cm/sup 2/.
机译:我们概述了我们对发射980nm波长发射的双极级联垂直腔表面发射激光器(VCSELS)的研究概述,包括缩放性质和设计变化对激光性能的影响以及GaAs Esaki结优化的策略。我们通过实验展示了高性能的两阶段和三级设备,其中后者具有130%的差分量子效率。通过测量数据确认缩放行为的导出的分析表达式,并在稳态的显着改善以及相对于有源区堆叠的动态性能。从研究的设计变型来看,清楚地提取了氧化物孔和有源区域间距对激光性能的影响,并揭示了在腔中存在电流展开,并且可以导致光学性能的严重限制。已经在N / SUP ++ / - 侧的供体浓度和in / sum 0.1 / ga / sup 0.9 /作为层的附加掺入GaAs隧道二极管,导致零偏置特异性电阻约1 / spl middot / 10 / sup -4 / / spl omega / cm / sup 2 /。

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