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The entangled triplet pair state in acene and heteroacene materials

机译:并苯和杂并苯材料中三重态对的纠缠态

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摘要

Entanglement of states is one of the most surprising and counter-intuitive consequences of quantum mechanics, with potent applications in cryptography and computing. In organic materials, one particularly significant manifestation is the spin-entangled triplet-pair state, which mediates the spin-conserving fission of one spin-0 singlet exciton into two spin-1 triplet excitons. Despite long theoretical and experimental exploration, the nature of the triplet-pair state and inter-triplet interactions have proved elusive. Here we use a range of organic semiconductors that undergo singlet exciton fission to reveal the photophysical properties of entangled triplet-pair states. We find that the triplet pair is bound with respect to free triplets with an energy that is largely material independent (~30?meV). During its lifetime, the component triplets behave cooperatively as a singlet and emit light through a Herzberg–Teller-type mechanism, resulting in vibronically structured photoluminescence. In photovoltaic blends, charge transfer can occur from the bound triplet pairs with >100% photon-to-charge conversion efficiency.
机译:纠缠态是量子力学最令人惊讶和违反直觉的后果之一,在密码学和计算领域具有强大的应用。在有机材料中,一个特别重要的表现形式是自旋纠缠的三重态对状态,该状态将一个spin-0单重态激子的自旋保守裂变介导为两个spin-1三重态激子。尽管经过长期的理论和实验探索,三重态对状态和三重态间相互作用的性质已被证明是难以捉摸的。在这里,我们使用一系列经历单重态激子裂变的有机半导体来揭示三重态对纠缠态的光物理性质。我们发现三重态对与自由三重态有关,其能量在很大程度上与物质无关(〜30?meV)。在其一生中,三元组的组件协同工作,成为单重态,并通过Herzberg-Teller型机制发光,从而形成了由纤维形成的光致发光。在光伏混合物中,结合的三重态对可以进行电荷转移,光子-电荷转换效率> 100%。

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