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Strong coupling and energy funnelling in an electrically conductive organic blend

机译:导电有机混合物中的强耦合和能量漏斗

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Strong coupling between an exciton and a cavity photon mode offers the promise of lower lasing thresholds, which has attracted interest in organic systems working toward electrically injected lasing. However, current organic polariton lasers have yet to exhibit thresholds beyond the reach of traditional lasers. Here, we investigate the possibility of energy funnelling from host to guest in a polariton system. We construct a material blend containing a dithiophenyl diketopyrrolopyrrole dye with an electrically conductive fluorene-benzothiadiazole co-polymer matrix. We demonstrate that a polariton system can exhibit efficient host to guest energy transfer while maintaining both strong exciton-polariton coupling and polariton emission. We expect that energy funnelling will become an important tool to drive down polariton laser thresholds in organic systems.
机译:激子和腔光孔模式之间的强耦合提供了低激光阈值的承诺,这引起了在朝向电气注入激光的有机系统中引起的兴趣。 然而,目前的有机极性激光器尚未表现出超出传统激光器的阈值。 在这里,我们调查从宿主到极化系统中的能源漏斗的可能性。 我们构建含有二苯基苯基二酮吡咯吡咯染料的材料共混物,具有导电芴 - 苯并噻唑共聚物基质。 我们证明,Polariton系统可以向客人能量转移表现出高效的主机,同时保持强大的激子 - 偏光极耦合和Polariton发射。 我们预计能量漏斗将成为在有机系统中沿着Polariton激光阈值下降的重要工具。

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