论文标题

寡烯半导体晶体中的单线激子光学元件和声子介导的动力学

Singlet exciton optics and phonon-mediated dynamics in oligoacene semiconductor crystals

论文作者

Thompson, Joshua J. P., Muth, Dominik, Anhäuser, Sebastian, Bischof, Daniel, Gerhard, Marina, Witte, Gregor, Malic, Ermin

论文摘要

有机半导体晶体是实现光电应用的高效,廉价和多样化的平台。这些晶体的光学响应由丰富的激子物理学控制。到目前为止,在这类材料中以声子驱动的单元激体动力学鲜为人知。在这项联合理论实验的工作中,我们结合了高质量的寡烯半导体晶体的制造,并通过光致发光测量表征与这些晶体中的显微镜建模方法相结合。这使我们可以研究单元激子光学和动力学。我们预测五苯晶晶体中的声子 - 孔链效应,在那里我们发现深色激子充当至关重要的声子介导的弛豫散射通道。虽然五苯晶体中的有效单线裂变阻碍了这种瓶颈效应的实验观察,但我们在理论和实验中都揭示了四乙烯晶体的吸收和光发光光谱,包括微观晶体,包括较高的davydov extiration of the davydov的激活状态,以及较高的davydeviration the the davydov的激活,并具有明显的极性和温度依赖性。共鸣。我们的联合理论实验研究代表了对寡乙烯晶体中单重激子光学和动力学的微观理解的显着进步。

Organic semiconductor crystals stand out as an efficient, cheap and diverse platform for realising optoelectronic applications. The optical response of these crystals is governed by a rich tapestry of exciton physics. So far, little is known on the phonon-driven singlet exciton dynamics in this class of materials. In this joint theory-experiment work, we combine the fabrication of a high-quality oligoacene semiconductor crystal and characterization via photoluminescence measurements with a sophisticated approach to the microscopic modeling in these crystals. This allows us to investigate singlet exciton optics and dynamics. We predict phonon-bottleneck effects in pentacene crystals, where we find dark excitons acting as crucial phonon-mediated relaxation scattering channels. While the efficient singlet fission in pentacene crystals hampers the experimental observation of this bottleneck effect, we reveal both in theory and experiment a distinct polarisation- and temperature-dependence in absorption and photoluminescence spectra of tetracene crystals, including microscopic origin of exciton linewidths, the activation of the higher Davydov states at large temperatures, and polarisation-dependent quenching of specific exciton resonances. Our joint theory-experiment study represents a significant advance in microscopic understanding of singlet exciton optics and dynamics in oligoacene crystals.

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