论文标题
间接带隙摩西的强光致发光增强
Strong photoluminescence enhancement in indirect bandgap MoSe$_2$ nanophotonic resonator
论文作者
论文摘要
由于其独特的光学特性,过渡金属二甲化酶(TMDS)是新一代光电和纳米光子学的有前途的平台。然而,与直接带隙TMD的单层相比,散装样品具有间接的带隙,可限制其作为光发射器的应用。另一方面,这些材料的高折射率似乎是创建具有强purcell效果的高质量纳米光子共振器的理想选择。在这项工作中,我们使用无抵抗的扫描探针光刻图并研究其光学特性,从散装(即间接带gap)摩西$ _2 $制造了窃窃私语 - 助理模式(WGM)谐振器。与原始薄片相比,微型发光($ $ $ -PL)的调查显示,谐振器的WGM光谱为100。散射实验和建模也证实了观察到的光谱的WGM性质。 PL的温度依赖性揭示了两种光致发光的成分。第一个淬灭,温度降低,第二个淬灭,不占主导地位。因此,这表明谐振器扩大了直接激活和温度激活的间接PL。因此,在这里,我们证明了从散装TMD制造纳米光谐振器并从间接带隙材料中获得PL的新方法。我们认为,建议的方法和结构在纳米光学方面具有巨大的前景。
Transition metal dichalcogenides (TMDs) is a promising platform for new generation optoelectronics and nanophotonics due to their unique optical properties. However, in contrast to direct bandgap TMDs monolayers, bulk samples have an indirect bandgap that restricts their application as light emitters. On the other hand, the high refractive index of these materials seems ideal for creating high-quality nanophotonic resonators with a strong Purcell effect. In this work, we fabricate Whispering-gallery mode (WGM) resonators from bulk (i.e., indirect bandgap) MoSe$_2$ using resistless scanning probe lithography and study their optical properties. Micro-photoluminescence($μ$-PL) investigation revealed WGM spectra of resonators with an enhancement factor of 100 compared to pristine flake. Scattering experiments and modeling also confirm the WGM nature of spectra observed. Temperature dependence of PL revealed two components of photoluminescence. The first one quenches with decreasing temperature, the second one does not and becomes dominant. Therefore, this suggests that resonators amplify both direct and temperature-activated indirect PL. Thus, here we demonstrated the novel approach to fabricating nanophotonic resonators from bulk TMDs and obtaining PL from indirect bandgap materials. We believe that the suggested approach and structures have great prospects in nanophotonics.