论文标题
从S1(21ag)pi偶联系统的旋转缠结三对对的光学投影和空间分离
Optical projection and spatial separation of spin entangled triplet-pairs from the S1 (21Ag-) state of pi-conjugated systems
论文作者
论文摘要
S1(21AG)状态是一种天然和合成PI偶联材料的光学深色状态,可以在光电过程中起关键作用,例如能量收集,光保护和单裂裂变。尽管这一重要性广泛,但S1(21ag)波函数的电子结构的直接实验特征仍然很少且不确定,尽管高级理论预测其具有丰富的多激发特征。在这里,研究原型聚合物,聚丙烯和类胡萝卜素时,我们在实验上证明了S1(21ag-)是一个叠加态,具有旋转式三胞胎激子(1(1(tt)))的强烈贡献。我们进一步表明,使用三重态吸收过渡对S1(21ag)波函数对S1(21ag)波函数进行选择性投影,将1(TT)组件选择为空间分离的三胞胎对歧管,最多可以通过一个大小命令增强了寿命,并且其产量强烈依赖于Chromophrophore coupleplothere coupleple的水平。我们的结果为PI共轭材料中的21个状态提供了统一的图像,并开放了新的途径,以利用其在单线裂变,光生物学和生成分子量子技术的纠缠(Spin-1)颗粒中的动力学。
The S1 (21Ag-) state is an optically dark state of natural and synthetic pi-conjugated materials that can play a critical role in optoelectronic processes such as, energy harvesting, photoprotection and singlet fission. Despite this widespread importance, direct experimental characterisations of the electronic structure of the S1 (21Ag-) wavefunction have remained scarce and uncertain, although advanced theory predicts it to have a rich multi-excitonic character. Here, studying an archetypal polymer, polydiacetylene, and carotenoids, we experimentally demonstrate that S1 (21Ag-) is a superposition state with strong contributions from spin-entangled pairs of triplet excitons (1(TT)). We further show that optical manipulation of the S1 (21Ag-) wavefunction using triplet absorption transitions allows selective projection of the 1(TT) component into a manifold of spatially separated triplet-pairs with lifetimes enhanced by up to one order of magnitude and whose yield is strongly dependent on the level of inter-chromophore coupling. Our results provide a unified picture of 21Ag-states in pi-conjugated materials and open new routes to exploit their dynamics in singlet fission, photobiology and for the generation of entangled (spin-1) particles for molecular quantum technologies.