Vyshnevyy Andrey A, Fedyanin Dmitry Yu
Opt Express. 2018 Dec 10;26(25):33473-33483. doi: 10.1364/OE.26.033473.
The recently developed plasmonic and photonic metal-semiconductor nanolasers feature unique properties, such as ultra-small mode volume and footprint, high Purcell factor, and ultra-fast modulation. However, it is often difficult to recognize when the transition to lasing occurs, while the most important feature of laser radiation, i.e., coherence, is available only above the lasing threshold. Here we systematically study the second-order coherence properties of metal-semiconductor nanolasers at both low- and high-pump rates. We find the lasing threshold using a clear coherence definition and derive a simple expression for the threshold pump current (optical pump power), which can be applied to most thresholdless and non-thresholdless metal-semiconductor nanolasers.
最近开发的等离子体和光子金属 - 半导体纳米激光器具有独特的特性,如超小模式体积和尺寸、高珀塞尔因子以及超快速调制。然而,通常很难识别何时发生向激光发射的转变,而激光辐射最重要的特性,即相干性,仅在激光阈值以上才具备。在这里,我们系统地研究了金属 - 半导体纳米激光器在低泵浦速率和高泵浦速率下的二阶相干特性。我们使用清晰的相干定义找到激光阈值,并推导出阈值泵浦电流(光泵浦功率)的简单表达式,该表达式可应用于大多数无阈值和有阈值的金属 - 半导体纳米激光器。