论文标题
GAAS金属n型纳米线的电荷和旋转运输距离距离的距离:i光载体在密集的费米海中的传输
Charge and spin transport over record distances in GaAs metallic n-type nanowires : I photocarrier transport in a dense Fermi sea
论文作者
论文摘要
我们已经研究了N型金属GAAS纳米线(〜10^17 cm^-3掺杂水平)中的电荷和自旋转运,由hydide蒸气相外观(HVPE)在Si底物上生长。这是通过紧密聚焦的圆形光线激发纳米线来完成的,并通过监测强度和圆形极化光谱,这是距激发点距离的函数。自旋偏振光电子引起了近带频谱中明确的特征,这是由于Fermi Sea的自旋 - 非极性电子与相同少数光孔的重组而与主线不同。在2(微)m的距离处,只有主线保留,这意味着光电子已经达到了费米海的热力学平衡。但是,尽管在相应能量处的强度谱中没有线,但是在频谱中相同的能量下仍观察到圆极化,这意味着光电子保留了它们的旋转方向,并且两个旋转储层保持不同。调查与激发点的距离有关,根据激发能力,可以在创纪录的距离超过20(微)m的情况下运输20%的光电子自旋极化。这一发现在N型掺杂纳米线中具有潜在的用于长距离自旋转运的应用。
We have investigated charge and spin transport in n-type metallic GaAs nanowires (~ 10^17 cm^-3 doping level), grown by hydride vapor phase epitaxy (HVPE) on Si substrates. This was done by exciting the nanowire by tightly-focussed circularly-polarized light and by monitoring the intensity and circular polarization spectrum as a function of distance from the excitation spot. The spin-polarized photoelectrons give rise to a well-defined feature in the nearbandgap spectrum, distinct from the main line due to recombination of the spin-unpolarized electrons of the Fermi sea with the same minority photoholes. At a distance of 2 (micro)m, only the main line remains, implying that photoelectrons have reached a charge thermodynamic equilibrium with the Fermi sea. However, although no line is present in the intensity spectrum at the corresponding energy, the circular polarization is still observed at the same energy in the spectrum, implying that photoelectrons have preserved their spin orientation and that the two spin reservoirs remain distinct. Investigations as a function of distance to the excitation spot show that, depending on excitation power, a photoelectron spin polarization of 20% can be transported over a record distance of more than 20 (micro)m. This finding has potential applications for long distance spin transport in n-type doped nanowires.