论文标题
范德华金属NBSE2中的自旋转换充电
Charge to Spin Conversion in van der Waals Metal NbSe2
论文作者
论文摘要
具有大电荷电流引起的自旋极化的量子材料对于下一代全电动旋转科学和技术来说是有希望的。具有高自旋轨道耦合和新型自旋纹理的范德华金属吸引了对自旋转换过程有效的电荷引起的重大关注。在这里,我们证明了NBSE2中自旋极化的电气产生至室温。为了探测NBSE2中电流诱导的自旋极化,我们使用了基于石墨烯的非本地自旋阀装置,其中使用非局部自旋开关和Hanle Spin Propessions测量值对NBSE2中的自旋极化有效地注射并检测到。在较低的温度下观察到NBSE2中的电荷旋转转化率明显更高,低于超导过渡温度TC〜7 k的NBSE2。但是,只能以高于超导临界电流的较高偏置电流观察到电荷旋转信号,从而将信号的观察仅限制在NBSE2的非驾驶状态。系统的测量提供了自旋极化的可能起源,主要是由于旋转厅效应或NBSE2中的Rashba-Edelstein效应,考虑到不同的对称性允许的电荷旋转转换过程。
Quantum materials with a large charge current-induced spin polarization are promising for next-generation all-electrical spintronic science and technology. Van der Waals metals with high spin-orbit coupling and novel spin textures have attracted significant attention for an efficient charge to spin conversion process. Here, we demonstrate the electrical generation of spin polarization in NbSe2 up to room temperature. To probe the current-induced spin polarization in NbSe2, we used a graphene-based non-local spin-valve device, where the spin-polarization in NbSe2 is efficiently injected and detected using non-local spin-switch and Hanle spin precession measurements. A significantly higher charge-spin conversion in NbSe2 is observed at a lower temperature, below the superconducting transition temperature Tc ~ 7 K of NbSe2. However, the charge-spin conversion signal could only be observed with a higher bias current above the superconducting critical current, limiting the observation of the signal only to the non-superconducting state of NbSe2. Systematic measurements provide the possible origins of the spin polarization to be predominantly due to the spin Hall effect or Rashba-Edelstein effect in NbSe2, considering different symmetry allowed charge-spin conversion processes.