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Carrier saturation in multiple quantum well metallo-dielectric semiconductor nanolaser: Is bulk material a better choice for gain media?

机译:多量子阱金属介质半导体纳米糖的载波饱和:散装材料是增益介质的更好选择?

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摘要

Although multi quantum well (MQW) structure is frequently suggested as the appropriate medium for providing optical gain in nanolasers with low threshold current, we demonstrate that in general bulk gain medium can be a better choice. We show that the high threshold gain required for nanolasers demands high threshold carrier concentrations and therefore a highly degenerate condition in which the barriers between the quantum wells are heavily pumped. As a result, there occurs spontaneous emission from the barrier in very dissipative low Q modes or undesired confined higher Q modes with resonance wavelengths close to the barrier bandgap. This results in a competition between wells and barriers that suppresses lasing. A complete model involving the optical properties of the resonant cavity combined with the carrier injection in the multilayer structure is presented to support our argument. With this theoretical model we show that while lasing is achieved in the nanolaser with bulk gain media, the nanolaser with MQW gain structure exhibits well emission saturation due to the onset of barrier emission. (C) 2013 Optical Society of America
机译:虽然多量子阱(MQW)结构经常被提出为适当的介质,用于在具有低阈值电流的纳米溶解器中提供光学增益的相应介质,但是我们证明通常散装增益介质可以是更好的选择。我们表明,纳米玻璃扫描器所需的高阈值增益需要高阈值载流子浓度,因此是一种高度简并的条件,其中量子孔之间的屏障被严重泵送。结果,从非常耗散的低Q模式或不希望的被限制的更高Q模式从屏障中出现自发发射,其具有靠近屏障带隙的谐振波长。这导致井下抑制激光的井和障碍之间的竞争。提出了一种涉及谐振腔的光学性质的完整模型,与多层结构中的载流子注射结合以支持我们的论点。利用这种理论模型,我们示出了在具有散装增益介质的纳米锥角度在纳米锥角度实现的同时,由于屏障发射的发射发出,具有MQW增益结构的纳米振色具有良好的发射饱和度。 (c)2013年光学学会

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