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Fano resonance induced fast to slow light in a hybrid semiconductor quantum dot and metal nanoparticle system

机译:Fano共振在混合半导体量子点和金属纳米粒子系统中诱导慢光诱导

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摘要

We theoretically demonstrate the Fano resonance and the conversion from fast to slow light in a hybrid semiconductor quantum dot (SQDs)-metal nanoparticle (MNPs) with cavity quantum electrodynamics treatment. The absorption spectra of the weak probe field exhibit a series of asymmetric Fano line shapes and their related optical propagation properties, such as fast and slow light effects, are investigated based on the hybrid system for suitable parametric regimes. Further, the transparency windows (i.e. the absorption dip approaches zero) in the probe absorption spectra are accompanied by the rapid steep dispersion of the Fano resonance profile, which promises the slow or fast light effect, and even tunable fast-to-slow light propagation (or vice versa) can be achieved by controlling different parameter regimes. Therefore the investigation may indicate promising applications in quantum information processing based on the hybrid SQD-MNP system.
机译:理论上,从理论上展示了扇形共振和转化从快速到慢光中的混合半导体量子点(SQDS) - 金属纳米粒子(MNP),具有空腔量子电动力学处理。 弱探针场的吸收光谱表现出一系列不对称的Fano线形状及其相关光学传播特性,例如快速和慢速效果,以获得合适的参数制度。 此外,探针吸收光谱中的透明窗口(即,吸收倾向接近零)伴随着Fano谐振曲线的快速陡峭分散,这承担了慢速或快速效果,甚至可以快速地快速到慢速传播 (或反之亦然)可以通过控制不同的参数制度来实现。 因此,研究可以指示基于混合SQD-MNP系统的量子信息处理中的有希望的应用。

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