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Variable spin-charge conversion across metal-insulator transition

机译:跨金属绝缘体转换的可变旋转电荷转换

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The charge-to-spin conversion efficiency is a crucial parameter in determining the performance of many useful spintronic materials. Usually, this conversion efficiency is predetermined by the intrinsic nature of solid-state materials, which cannot be easily modified without invoking chemical or structural changes in the underlying system. Here we report on successful modulation of charge-spin conversion efficiency via the metal-insulator transition in a quintessential strongly correlated electron compound vanadium dioxide (VOsub2/sub). By employing ferromagnetic resonance driven spin pumping and the inverse spin Hall effect measurement, we find a dramatic change in the spin pumping signal (decrease by??80%) and charge-spin conversion efficiency (increase by five times) upon insulator to metal transition. The abrupt change in the structural and electrical properties of this material therefore provides useful insights on the spin related physics in a strongly correlated material undergoing a phase transition.
机译:电荷到旋转转换效率是确定许多有用的旋转反应材料的性能的关键参数。通常,通过固态材料的内在性质预先确定这种转化效率,这不能在不调用底层系统中的化学或结构变化的情况下容易地修改。在这里,我们通过在典型强相关的电子化合物钒二氧化钒中的金属 - 绝缘体转变来成功地调制电荷 - 旋转转换效率(VO 2 )。通过采用铁磁共振驱动的旋转泵和逆旋转霍尔效应测量,我们发现旋转泵送信号的显着变化(减少Δ>?80%)和电荷 - 旋转转换效率(增加五次)金属的绝缘体过渡。因此,该材料的结构和电性能的突然变化为在经历相转变的强相关的材料中对旋转相关物理的有用见解。

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