Walter Schottky Institut, Technische Universität München, Am Coulombwall 3, 85748 Garching, Germany.
Phys Rev Lett. 2010 Jan 29;104(4):046402. doi: 10.1103/PhysRevLett.104.046402. Epub 2010 Jan 27.
We investigate the spin species relevant for the spin-dependent recombination used for the electrical readout of coherent spin manipulation in phosphorus-doped silicon. Via a multifrequency pump-probe experiment in pulsed electrically detected magnetic resonance, we demonstrate that the dominant spin-dependent recombination transition occurs between phosphorus donors and Si/SiO_{2} interface states. Combining pulses at different microwave frequencies allows us to selectively address the two spin subsystems participating in the recombination process and to coherently manipulate and detect the relative spin orientation of the two recombination partners.
我们研究了与磷掺杂硅中相干自旋操控的电读出所用的自旋相关复合相关的自旋种类。通过在脉冲电检测磁共振中的多频泵浦探测实验,我们证明了主要的自旋相关复合跃迁发生在磷施主和 Si/SiO_{2} 界面态之间。通过在不同微波频率下组合脉冲,我们可以有选择地寻址参与复合过程的两个自旋子系统,并对两个复合伙伴的相对自旋方向进行相干操控和检测。