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首页> 外文期刊>Physical review >Interaction of a quantum-dot cavity system with acoustic phonons: Stronger light-matter coupling can reduce the visibility of strong coupling effects
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Interaction of a quantum-dot cavity system with acoustic phonons: Stronger light-matter coupling can reduce the visibility of strong coupling effects

机译:量子点腔系统与声子的相互作用:较强的光-质耦合会降低强耦合效应的可见性

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摘要

We present a numerically complete study of the combined dynamics of a quantum dot exciton coupled to a single quantized cavity mode and a continuum of acoustic phonons. We demonstrate that acoustic phonons have a pronounced impact on effects characteristic of the strong light-matter coupling regime, such as vacuum Rabi oscillations and collapse and revival scenarios. This impact is considerable already at zero temperature, where initially no phonons are present. Counterintuitively it is found that an increase of the light-matter coupling does not necessarily enhance the visibility of strong-coupling effects. In fact, for typical experimental situations, a stronger light-matter coupling will considerably reduce the visibility.
机译:我们目前对量子点激子与单个量化腔模和声子的连续体耦合的组合动力学进行数值完整的研究。我们证明,声子对强光-物质耦合机制(例如真空Rabi振荡,坍塌和复兴情形)的特有影响具有显着影响。在最初没有声子的零温度下,这种影响已经相当大了。违反直觉地发现,光-物质耦合的增加并不一定会增强强耦合效应的可见性。实际上,对于典型的实验情况,较强的光-质耦合将大大降低可见度。

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