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Slab thickness tuning approach for solid-state strong coupling between photonic crystal slab nanocavity and a quantum dot

机译:平板厚度调整方法用于光子晶体平板纳米腔和量子点之间的固态强耦合

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摘要

The quality factor and mode volume of a nanocavity play pivotal roles in realizing the strong coupling interaction between the nanocavity mode and a quantum dot. We present an extremely simple method to obtain the mode volume and investigate the effect of the slab thickness on the quality factor and mode volume of photonic crystal slab nanocavities. We reveal that the mode volume is approximatively proportional to the slab thickness. As compared with the previous structure finely optimized by introducing displacement of the air holes, via tuning the slab thickness, the quality factor can be enhanced by about 22%, and the ratio between the coupling coefficient and the nanocavity decay rate can be enhanced by about 13%. This can remarkably enhance the capability of the photonic crystal slab nanocavity for realizing the strong coupling interaction. The slab thickness tuning approach is feasible and significant for the experimental fabrication of the solid-state nanocavities.
机译:纳米腔的品质因数和模式体积在实现纳米腔模式与量子点之间的强耦合相互作用中起着关键作用。我们提出了一种非常简单的方法来获得模量并研究平板厚度对光子晶体平板纳米腔的品质因数和模量的影响。我们揭示了模量与平板厚度近似成比例。与通过引入气孔的位移而进行精细优化的先前结构相比,通过调整板坯厚度,可以将品质因数提高约22%,并且可以将耦合系数与纳米腔衰减率之间的比率提高约13%。这可以显着增强光子晶体平板纳米腔体实现强耦合相互作用的能力。平板厚度调整方法对于固态纳米腔的实验制造是可行的并且具有重要意义。

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