Liang Shiheng, Geng Rugang, Yang Baishun, Zhao Wenbo, Chandra Subedi Ram, Li Xiaoguang, Han Xiufeng, Nguyen Tho Duc
Physics and Astronomy Department, University of Georgia, Athens, Georgia 30602, USA.
State Key Laboratory of Magnetism, Beijing National Laboratory for Condensed Matter Physics, Institute of Physics, Chinese Academy of Sciences, Beijing 100190, China.
Sci Rep. 2016 Jan 20;6:19461. doi: 10.1038/srep19461.
We investigated curvature-enhanced spin-orbit coupling (SOC) and spinterface effect in carbon-based organic spin valves (OSVs) using buckyball C60 and C70 molecules. Since the naturally abundant (12)C has spinless nuclear, the materials have negligible hyperfine interaction (HFI) and the same intrinsic SOC, but different curvature SOC due to their distinct curvatures. We fitted the thickness dependence of magnetoresistance (MR) in OSVs at various temperatures using the modified Jullière equation. We found that the spin diffusion length in the C70 film is above 120 nm, clearly longer than that in C60 film at all temperatures. The effective SOC ratio of the C70 film to the C60 film was estimated to be about 0.8. This was confirmed by the magneto-electroluminescence (MEL) measurement in fullerene-based light emitting diodes (LED). Next, the effective spin polarization in C70-based OSVs is smaller than that in C60-based OSVs implying that they have different spinterface effect. First principle calculation study shows that the spin polarization of the dz(2) orbital electrons of Co atoms contacted with C60 is larger causing better effective spin polarization at the interface.
我们使用巴基球C60和C70分子研究了碳基有机自旋阀(OSV)中的曲率增强自旋轨道耦合(SOC)和自旋界面效应。由于天然丰度的(12)C具有无自旋的原子核,这些材料具有可忽略不计的超精细相互作用(HFI)和相同的固有SOC,但由于它们不同的曲率而具有不同的曲率SOC。我们使用修正的朱利尔方程拟合了不同温度下OSV中磁电阻(MR)的厚度依赖性。我们发现,在所有温度下,C70薄膜中的自旋扩散长度都超过120nm,明显长于C60薄膜中的自旋扩散长度。C70薄膜与C60薄膜的有效SOC比率估计约为0.8。这在基于富勒烯的发光二极管(LED)中的磁电致发光(MEL)测量中得到了证实。接下来,基于C70的OSV中的有效自旋极化小于基于C60的OSV中的有效自旋极化,这意味着它们具有不同的自旋界面效应。第一性原理计算研究表明,与C60接触的Co原子的dz(2)轨道电子的自旋极化更大,从而在界面处产生更好的有效自旋极化。