论文标题
有机微腔内使用分子构象和方向的有效各向异性极化激光
Efficient anisotropic polariton lasing using molecular conformation and orientation in organic microcavities
论文作者
论文摘要
最近,有机激子极化激光器被证明是在室温下运行有效的连贯光源来实现有效源的非凡候选者。尽管它们的阈值现在与常规的有机光子激光器相媲美,但分子构象和方向的调整是进一步增强其性能的一种手段。在这里,我们首先报告了基于高Q微腔的高Q微腔的阈值降低了两倍。然后,我们利用PFO的液晶特性,并使用稀薄的透明硫酸染料1(SD1)光平衡层来诱导聚合物链的均匀nematic对准。产生的过渡偶极矩方向增加了拉比的能量,使系统进入超强耦合方案,我们观察到各向异性极化层激光,吸收阈值的降低了八倍,降低了八倍,降低到1.14 PJ /0.36μjcm-2,以与等级的方向相似,而与等级的方向无关。据我们所知,该阈值低于最先进的光学泵送有机垂直腔表面发射光子和极性激光器所证明的阈值。这次演示为更有效的偏光设备和低极化子数量的基本效果的观察开辟了新的机会。
Organic exciton-photon polariton lasers have recently been shown to be remarkable candidates for the realization of efficient sources of coherent light operating at room temperature. While their thresholds are now comparable with conventional organic photon lasers, tuning of molecular conformation and orientation as a means to further enhance their performance remains largely unexplored. Here, we first report a two-fold reduction in the threshold of a polariton laser based on a high-Q microcavity filled with an active layer of poly(9,9-dioctylfluorene) (PFO) when 15% β-phase conformation is introduced. We then take advantage of the liquid crystalline properties of PFO and use a thin transparent sulfuric dye 1 (SD1) photoalignment layer to induce homogeneous nematic alignment of the polymer chains. The resulting transition dipole moment orientation increases the Rabi energy, bringing the system into the ultra-strong coupling regime where we observe anisotropic polariton lasing with an eight-fold reduction in absorbed threshold, down to 1.14 pJ / 0.36 μJcm-2 for the direction parallel to the orientation, with no emission along the orthogonal direction. To our knowledge, this threshold is lower than demonstrated with state-of-the art optically pumped organic vertical cavity surface-emitting photon and polariton lasers. This demonstration opens new opportunities for more efficient polaritonic devices and the observation of fundamental effects at low polariton numbers.