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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Plasmonic Nonlocal Response Effects on Dipole Decay Dynamics in the Weak- and Strong-Coupling Regimes
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Plasmonic Nonlocal Response Effects on Dipole Decay Dynamics in the Weak- and Strong-Coupling Regimes

机译:等离子体非局部反应对偶极衰减动态的弱点和强耦合制度

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摘要

The largest increases in spontaneous decay rates of quantum emitters can be achieved using plasmonic structures that are characterized by closely spaced metallic elements. These systems can give rise to the smallest optical cavities attainable, offering a viable solution to achieve single molecule light-matter strong-coupling. On the other hand, their optical response might be strongly affected by nonlocal and quantum effects of the metal electron gas. In this work, we analyze the impact of nonlocal effects on the emission properties of a single quantum emitter coupled to a plasmonic system characterized by deeply subwavelength gap regions, in both the weak and the strong-coupling regimes. We find that the presence of nonlocality imposes strict limits to the achievability of strong-coupling with single molecules in apparent contrast to recent experiments, suggesting that a more refined theory might be required. These limits are even larger if a k-dependent absorption is included in the calculations. These results place boundaries to the applicability of hydrodynamic methods.
机译:可以使用具有紧密间隔的金属元素的等离子体结构来实现量子发射器的自发衰减速率的最大增加。这些系统可以产生最小的光学腔,提供可行的解决方案,以实现单分子浅偶联的偏振。另一方面,它们的光学响应可能受金属电子气体的非局部和量子效应强烈影响。在这项工作中,我们分析了非局部效应对耦合到特征在于深度亚波长间隙区域的等级发射器的发射性能的影响,所述弱和强耦合制度。我们发现,非委员会的存在对与最近实验表观对比的单一分子的强偶联的可实现性强烈限制,这表明可能需要更加精致的理论。如果在计算中包含K依赖性吸收,则这些限制甚至更大。这些结果将边界置于流体动力学方法的适用性。

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