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Coherent electrical manipulation of nuclear spins in semiconductors

机译:半导体中核自旋的相干电操纵

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摘要

We have utilized the electron-nuclear spin interaction in quantum-Hall edge channels for manipulating local nuclear spins in semiconductors. Nuclear spins in a limited region along spin-resolved quantum-Hall edge channels are strongly polarized through the hyperfine interaction. Quantum states of the nuclear spins evolve coherently during a pulsed-mode application of RF magnetic field generated by a built-in micro-metal strip. The final nuclear-spin state reached after the pulsed-mode operation is read out by the edge-channel transport. The amplitude of nuclear magnetic resonance oscillates as a function of the pulse duration, i.e. the Rabi oscillation of nuclear spins in semiconductor devices. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们已经利用量子霍尔边缘通道中的电子-核自旋相互作用来操纵半导体中的局部核自旋。沿着自旋分辨的量子霍尔边缘通道在有限区域内的核自旋通过超精细相互作用而强烈极化。核自旋的量子态在内置微金属带所产生的RF磁场的脉冲模式应用过程中连贯地发展。在脉冲模式操作之后,边缘通道传输会读出最终的核自旋状态。核磁共振的振幅随脉冲持续时间而变化,即半导体器件中核自旋的拉比振荡。 (C)2004 Elsevier B.V.保留所有权利。

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