共查询到17条相似文献,搜索用时 62 毫秒
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地于半导体分别限制单量子阱激光器,为了降低阈值电流,提高外量子效率,分析和讨论了影响阈值电流和外量子效率的各种因素,并做了一定的数值计算,给出了量佳结构参数。 相似文献
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量子阱无序的窗口结构InGaAs/GaAs/AlGaAs量子阱激光器 总被引:3,自引:0,他引:3
对SiO2薄膜在快速热退火条件下引起的空位诱导InGaAs/GaAs应变量子阱无序和SrF2薄膜抑制其量子阱无序的方法进行了实验研究。并将这两种技术的结合(称为选择区域量子阱无序技术)应用于脊形波导InGaAs/GaAs/AlGaAs应变量子阱激光器,研制出具有无吸收镜面的窗口结构脊形波导量子阱激光器。该结构3μm条宽激光器的最大输出功率为340mW,和没有窗口的同样结构的量子阱激光器相比,最大输出功率提高了36%。在100mW输出功率下,发射光谱中心波长为978nm,光谱半宽为1.2nm。平行和垂直方向远场发散角分别为7.2°和30° 相似文献
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使用MBE技术低温生长了含有3个Siδ掺杂层的GaAs外延片,形成三量子阱结构。在4.2~300K温区0.1T的电磁铁上测量了样品载流子浓度和迁移率随温度的变化。在0.3~4.2K(^3He温区)和0~7T强磁场下测量了样品的横向磁阻、纵向磁阻和霍尔电阻。观察到了横向磁阻的SdH振荡和纵向磁阻的抗磁SdH振荡。根据实验结果着重讨论了纵向磁阻振荡的起源以及霍尔振荡的含义,简单分析了δ掺杂二维电子气中 相似文献
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Alexander Mellor Antonio Luque Ignacio Tobías Antonio Martí 《Advanced functional materials》2014,24(3):339-345
An attractive but challenging technology for high efficiency solar energy conversion is the intermediate band solar cell (IBSC), whose theoretical efficiency limit is 63%, yet which has so far failed to yield high efficiencies in practice. The most advanced IBSC technology is that based on quantum dots (QDs): the QD‐IBSC. In this paper, k·p calculations of photon absorption in the QDs are combined with a multi‐level detailed balance model. The model has been used to reproduce the measured quantum efficiency of a real QD‐IBSC and its temperature dependence. This allows the analysis of individual sub‐bandgap transition currents, which has as yet not been possible experimentally, yielding a deeper understanding of the failure of current QD‐IBSCs. Based on the agreement with experimental data, the model is believed to be realistic enough to evaluate future QD‐IBSC proposals. 相似文献
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Maykel Courel Julio C. Rimada Luis Hernndez 《Progress in Photovoltaics: Research and Applications》2013,21(3):276-282
A theoretical model is performed to study the viability of the AlGaAs/GaAs superlattice solar cell (SLSC). Using the Transfer Matrix Method, the conditions for resonant tunneling are established for a particular SL geometry with variably spaced quantum wells. The effective density of states and the absorption coefficient are calculated to determinate the J–V characteristic. Radiative, non‐radiative, and interface recombination were evaluated from a modeled SLSC, and their values were compared with a multiple quantum well solar cell of the same aluminum composition. A discussion about the conditions, where SLSC performance overcomes that of a multiple quantum well solar cell, is addressed. Copyright © 2011 John Wiley & Sons, Ltd. 相似文献