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半导体量子阱中局域核自旋相干性的光泵浦-探测测量

Optical pump-probe measurements of local nuclear spin coherence in semiconductor quantum wells.

作者信息

Sanada H, Kondo Y, Matsuzaka S, Morita K, Hu C Y, Ohno Y, Ohno H

机构信息

Laboratory for Nanoelectronics and Spintronics, Research Institute of Electrical Communication, Tohoku University, Katahira 2-1-1, Aoba-ku, Sendai 980-8577, Japan.

出版信息

Phys Rev Lett. 2006 Feb 17;96(6):067602. doi: 10.1103/PhysRevLett.96.067602.

Abstract

We demonstrate local manipulation and detection of nuclear spin coherence in semiconductor quantum wells by an optical pump-probe technique combined with pulse rf NMR. The Larmor precession of photoexcited electron spins is monitored by time-resolved Kerr rotation (TRKR) as a measure of nuclear magnetic field. Under the irradiation of resonant pulsed rf magnetic fields, Rabi oscillations of nuclear spins are traced by TRKR signals. The intrinsic coherence time evaluated by a spin-echo technique reveals the dependence on the orientation of the magnetic field with respect to the crystalline axis as expected by the nearest neighbor dipole-dipole interaction.

摘要

我们通过结合脉冲射频核磁共振的光泵浦-探测技术,展示了在半导体量子阱中对核自旋相干性的局部操纵和检测。光激发电子自旋的拉莫尔进动通过时间分辨克尔旋转(TRKR)进行监测,以此作为测量核磁场的手段。在共振脉冲射频磁场的照射下,核自旋的拉比振荡通过TRKR信号进行追踪。通过自旋回波技术评估的本征相干时间揭示了其对磁场相对于晶轴取向的依赖性,这与最近邻偶极-偶极相互作用的预期一致。

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