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首页> 外文期刊>Science Advances >Reversible spin storage in metal oxide—fullerene heterojunctions
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Reversible spin storage in metal oxide—fullerene heterojunctions

机译:金属氧化物 - 富勒烯杂交中的可逆旋转储存

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We show that hybrid MnOsubx/sub/Csub60/sub heterojunctions can be used to design a storage device for spin-polarized charge: a spin capacitor. Hybridization at the carbon-metal oxide interface leads to spin-polarized charge trapping after an applied voltage or photocurrent. Strong electronic structure changes, including a 1-eV energy shift and spin polarization in the Csub60/sub lowest unoccupied molecular orbital, are then revealed by x-ray absorption spectroscopy, in agreement with density functional theory simulations. Muon spin spectroscopy measurements give further independent evidence of local spin ordering and magnetic moments optically/electronically stored at the heterojunctions. These spin-polarized states dissipate when shorting the electrodes. The spin storage decay time is controlled by magnetic ordering at the interface, leading to coherence times of seconds to hours even at room temperature.
机译:我们表明混合MnO x / c 60 异质函数可用于设计用于旋转偏振电荷的存储装置:自旋电容器。碳金属氧化物界面的杂交导致施加电压或光电流后的旋转偏振电荷捕获。强大的电子结构改变,包括C 60 最低未占用的分子轨道中的1-EV能量移位和自旋极化,并通过X射线吸收光谱揭示,与密度泛函理论模拟一致。 MUON自旋光谱测量结果提供了局部自旋排序和磁性时刻的进一步独立证据,用于光学/电子储存在异质结上。这些旋转偏振状态在短路时耗散。通过在界面处的磁性排序来控制旋转存储衰减时间,即使在室温下也是秒到小时的相干时间。

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