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Dynamic spin filtering at the Co/Alq3 interface mediated by weakly coupled second layer molecules

机译:由弱耦合的第二层分子介导的Co / Alq3界面的动态自旋过滤

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摘要

Spin filtering at organic-metal interfaces is often determined by the details of the interaction between the organic molecules and the inorganic magnets used as electrodes. Here we demonstrate a spin-filtering mechanism based on the dynamical spin relaxation of the long-living interface states formed by the magnet and weakly physisorbed molecules. We investigate the case of Alq3 on Co and, by combining two-photon photoemission experiments with electronic structure theory, show that the observed long-time spin-dependent electron dynamics is driven by molecules in the second organic layer. The interface states formed by physisorbed molecules are not spin-split, but acquire a spin-dependent lifetime, that is the result of dynamical spin-relaxation driven by the interaction with the Co substrate. Such spin-filtering mechanism has an important role in the injection of spin-polarized carriers across the interface and their successive hopping diffusion into successive molecular layers of molecular spintronics devices.
机译:在有机金属界面处的自旋过滤通常取决于有机分子与用作电极的无机磁体之间相互作用的细节。在这里,我们展示了一种基于磁体和弱物理吸附分子形成的长寿命界面态的动态自旋弛豫的自旋过滤机制。我们研究了Co上Alq3的情况,并通过将双光子光发射实验与电子结构理论相结合,表明观察到的长期自旋依赖性电子动力学受第二有机层中分子的驱动。由物理吸附的分子形成的界面状态不是自旋分裂,而是获得自旋依赖性寿命,这是由与Co底物相互作用驱动的动态自旋松弛的结果。这种自旋过滤机制在跨界面注入自旋极化的载流子及其连续跳变扩散到分子自旋电子学器件的连续分子层中具有重要作用。

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