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Optical conductivity and optical effective mass in a high-mobility organic semiconductor: Implications for the nature of charge transport

机译:高迁移率有机半导体中的光导率和光有效质量:对电荷传输性质的影响

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摘要

We present a multiscale modeling of the infrared optical properties of the rubrene crystal. The results are in very good agreement with the experimental data that point to nonmonotonic features in the optical conductivity spectrum and small optical effective masses. We find that, in the static-disorder approximation, the nonlocal electron-phonon interactions stemming from low-frequency lattice vibrations can decrease the optical effective masses and lead to lighter quasiparticles. On the other hand, the charge-transport and infrared optical properties of the rubrene crystal at room temperature are demonstrated to be governed by localized carriers driven by inherent thermal disorders. Our findings underline that the presence of apparently light carriers in high-mobility organic semiconductors does not necessarily imply bandlike transport.
机译:我们提出了红宝石晶体的红外光学特性的多尺度建模。结果与实验数据非常吻合,后者指出了光导谱中的非单调特征和较小的光学有效质量。我们发现,在静态无序近似中,由低频晶格振动引起的非局部电子-声子相互作用可以降低光学有效质量并导致更轻的准粒子。另一方面,室温下红荧烯晶体的电荷传输和红外光学性质被证明受固有热失调驱动的局部载流子支配。我们的发现强调,在高迁移率的有机半导体中显然存在光载波并不一定意味着带状传输。

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