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Plasmonically induced coherent and polarized random laser emissions in colloidal CdSe/ZnS quantum dots with ellipsoidal Ag nanoparticles

机译:椭圆虫Ag纳米粒子胶体Cdse / ZnS量子点中的量相诱导的相干和偏光激光排放

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We demonstrate the capability of controlling the optical anisotropy of lasing emissions by manipulating the coupling between the oscillated electric field and the localized surface plasmon (LSP) resonance for a random lasing medium composed of colloidal CdSe/ZnS quantum dots (QDs) and ellipsoidal silver nanoparticles (Ag NPs). Distinctive from the amplified spontaneous emission (ASE) generally observed on the CdSe/ZnS QDs, it has been found that lasing emissions of the revealed system exhibit clear interference features with low-threshold characteristics, mainly attributed to enhanced light scatterings and optical gains arisen in the peripheral surfaces of ellipsoidal Ag NPs. Importantly, the relative orientation, between the oscillated electric field of emitted light from CdSe/ZnS QDs and the ellipse axis of Ag NPs, plays a critical role in selective excitation of LSP resonances leading to the laser emissions with preferential optical polarizations. That is further examined and validated by the finite-difference time-domain simulation. The achievement of spatial and spectral coupling of LSP resonance with colloidal QDs respectively make the present system one of the promising candidates of colloidal QDs-based random lasers to achieve coherent and polarized lasing emissions.
机译:我们通过操纵由胶体Cdse / ZnS量子点(QDS)和椭圆形银纳米粒子和椭圆形银纳米粒子组成的随机激光介质来控制激光排放的光学各向异性的能力来控制激光排放的光学各向异性(AG NPS)。从CDSE / ZnS QDS上观察到的放大的自发发射(ASE)是不同的,已经发现显示的系统的激光排放具有低阈值特性的明显干扰特征,主要归因于增强的光散射和光学增长椭圆形Ag nps的周表面。重要的是,来自CDSE / ZnS QD的发射光的振荡电场与AG NPS的椭圆轴之间的相对取向在LSP共振的选择性激励中起着关键作用,导致优先光学偏振的激光发射。通过有限差分时域模拟进一步检查和验证。利用胶体QD的LSP共振的空间和光谱耦合的实现分别使本系统成为基于胶体QDS的随机激光器的有希望的候选者之一,以实现连贯和偏振的激光排放。

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