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Probing long-range carrier-pair spin–spin interactions in a conjugated polymer by detuning of electrically detected spin beating

机译:通过消除电检测到的自旋跳动的失谐来探测共轭聚合物中的远程载流子对自旋-自旋相互作用

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摘要

Weakly coupled electron spin pairs that experience weak spin–orbit interaction can control electronic transitions in molecular and solid-state systems. Known to determine radical pair reactions, they have been invoked to explain phenomena ranging from avian magnetoreception to spin-dependent charge-carrier recombination and transport. Spin pairs exhibit persistent spin coherence, allowing minute magnetic fields to perturb spin precession and thus recombination rates and photoreaction yields, giving rise to a range of magneto-optoelectronic effects in devices. Little is known, however, about interparticle magnetic interactions within such pairs. Here we present pulsed electrically detected electron spin resonance experiments on poly(styrene-sulfonate)-doped poly(3,4-ethylenedioxythiophene) (PEDOT:PSS) devices, which show how interparticle spin–spin interactions (magnetic-dipolar and spin-exchange) between charge-carrier spin pairs can be probed through the detuning of spin-Rabi oscillations. The deviation from uncoupled precession frequencies quantifies both the exchange (<30 neV) and dipolar (23.5±1.5 neV) interaction energies responsible for the pair's zero-field splitting, implying quantum mechanical entanglement of charge-carrier spins over distances of 2.1±0.1 nm.
机译:经历弱自旋-轨道相互作用的弱耦合电子自旋对可以控制分子和固态系统中的电子跃迁。已知可确定自由基对的反应,已使用它们来解释从禽磁感受到自旋相关的电荷-载流子重组和转运的现象。自旋对表现出持续的自旋相干性,从而允许微小的磁场干扰自旋进动,从而影响复合速率和光反应产率,从而在器件中产生一系列的磁光效应。然而,关于这种对中的粒子间磁性相互作用知之甚少。在这里,我们介绍了在掺杂聚苯乙烯磺酸盐的聚(3,4-乙撑二氧噻吩)(PEDOT:PSS)器件上进行脉冲电检测的电子自旋共振实验,该实验显示了粒子间自旋-自旋相互作用(磁偶极和自旋交换)可以通过自旋拉比振荡的失谐来探究电荷载流子自旋对之间的)。与未耦合进动频率的偏差量化了负责该对零场分裂的交换(<30 neV)和偶极(23.5±1.5 neV)相互作用能,这意味着电荷载子自旋的量子机械缠结在2.1±0.1 nm的距离上。

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