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纹影纹理和形貌诱导的有机激子-极化激元激光中的限制效应

Schlieren texture and topography induced confinement in an organic exciton-polariton laser.

作者信息

Le Roux Florian, Mischok Andreas, Tenopala-Carmona Francisco, Gather Malte C

机构信息

Humboldt Centre for Nano- and Biophotonics, Institute for Light and Matter, Department of Chemistry and Biochemistry, University of Cologne, Köln, Germany.

Organic Semiconductor Centre, SUPA, School of Physics and Astronomy, University of St Andrews, St Andrews, UK.

出版信息

Nat Commun. 2025 Jan 18;16(1):811. doi: 10.1038/s41467-025-55875-1.

Abstract

Non-linearities in organic exciton-polariton microcavities represent an attractive platform for quantum devices. However, progress in this area hinges on the development of material platforms for high-performance polariton lasing, scalable and sustainable fabrication, and ultimately strategies for electrical pumping. Here, we show how introducing Schlieren texturing and a rough intra-cavity topography in a liquid crystalline conjugated polymer enables strong in-plane confinement of polaritons and drastic enhancement of the lasing properties. In high-Q distributed Bragg reflector microcavities, polariton lasing was observed at unprecedented thresholds of 136 fJ per pulse. Morphology tuning also permitted polariton lasing in more lossy metallic microcavities while maintaining a competitive lasing threshold. The facile fabrication of these cavities will drastically reduce the complexity of integrating polariton lasers with other structures and the high conductivity of metallic mirrors may provide a route to electrical pumping.

摘要

有机激子-极化激元微腔中的非线性为量子器件提供了一个极具吸引力的平台。然而,该领域的进展取决于高性能极化激元激光的材料平台开发、可扩展且可持续的制造技术,以及最终的电泵浦策略。在此,我们展示了如何在液晶共轭聚合物中引入纹影纹理和粗糙的腔内形貌,从而实现极化激元的强面内限制并显著增强激光特性。在高Q值分布式布拉格反射器微腔中,观察到极化激元激光的脉冲阈值低至前所未有的每脉冲136飞焦。形貌调控还使得在损耗更大的金属微腔中实现极化激元激光,同时保持具有竞争力的激光阈值。这些微腔的简易制造将大幅降低极化激元激光器与其他结构集成的复杂性,并且金属镜的高导电性可能为电泵浦提供一条途径。

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