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Evolutionary optimization of light-matter coupling in open plasmonic cavities

机译:开放等离子体腔中浅型耦合的进化优化

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Using a particle swarm optimization algorithm and finite-difference in time-domain simulations, we optimize the coupling strength between excitons in poly(3-hexylthiophene-2,5-diyl) (P3HT) and surface lattice resonances in open cavities defined by arrays of aluminum nanoparticles. Strong light-matter coupling and the formation of exciton-polaritons are demonstrated. Nanoparticle arrays with optimal dimensions have been fabricated and measured, validating the predictions by the numerical method. P3HT is a regioregular semiconducting polymer used as a donor material in acceptor-donor blends for organic photovoltaic applications. Our results demonstrate the efficacy of the proposed method for the optimization of light-matter coupling and its potential application for the enhanced performance of optoelectronic devices.
机译:利用粒子群优化算法和时域有限差分模拟,我们优化了聚(3-己基噻吩-2,5-二酰基)(P3HT)中激子与由铝纳米颗粒阵列定义的开放腔中表面晶格共振之间的耦合强度。证明了强光-物质耦合和激子极化子的形成。制备并测量了具有最佳尺寸的纳米颗粒阵列,用数值方法验证了预测结果。P3HT是一种区域规则的半导体聚合物,用作有机光伏应用的受体-施主混合物中的施主材料。我们的结果证明了所提出的方法在优化光-物质耦合方面的有效性,以及它在提高光电器件性能方面的潜在应用。

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