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Conductivity and Photoconductivity of a p-Type Organic Semiconductor under Ultrastrong Coupling

机译:超空地联轴器下P型有机半导体的电导率和光电导性

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摘要

During the past decade, it has been shown that light–matter strong coupling of materials can lead to modified and often improved properties which has stimulated considerable interest. While charge transport can be enhanced in n-type organic semiconductors by coupling the electronic transition and thereby splitting the conduction band into polaritonic states, it is not clear whether the same process can also influence carrier transport in the valence band of p-type semiconductors. Here we demonstrate that it is indeed possible to enhance both the conductivity and photoconductivity of a p-type semiconductor rr-P3HT that is ultrastrongly coupled to plasmonic modes. It is due to the hybrid light–matter character of the virtual polaritonic excitations affecting the linear response of the material. Furthermore, in addition to being enhanced, the photoconductivity of rr-P3HT shows a modified spectral response due to the formation of the hybrid polaritonic states. This illustrates the potential of engineering the vacuum electromagnetic environment to improve the optoelectronic properties of organic materials.
机译:在过去的十年中,已经表明,材料的淡偏光力耦合可以导致改性且经常改善刺激相当兴趣的性质。虽然通过耦合电子转换并从而将导电带分成偏光极状态,但是在N型有机半导体中可以在N型有机半导体中提高电荷传输,但是目前尚不清楚相同的过程是否可以影响p型半导体的价带中的载流子传输。在这里,我们证明确实可以增强超微耦合到等离子体模式的P型半导体RR-P3HT的电导率和光电导性。它是由于影响材料线性响应的虚拟偏光激发的混合浅品特征。此外,除了增强的外,RR-P3HT的光电导性还表示由于混合偏振性状态的形成而显示的改性光谱响应。这说明了工程真空电磁环境的潜力,以改善有机材料的光电性质。

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