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首页> 外文期刊>Physical review.B.Condensed matter and materials physics >Resonant spin amplification in Faraday geometry
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Resonant spin amplification in Faraday geometry

机译:法拉第几何中的共振旋转扩增

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摘要

We demonstrate the realization of the resonant spin amplification (RSA) effect in Faraday geometry where a magnetic field is applied parallel to the optically induced spin polarization so that no RSA is expected. However, model considerations predict that it can be realized for a central spin interacting with a fluctuating spin environment. As a demonstrator, we choose an ensemble of singly-charged (In,Ga)As/GaAs quantum dots, where the resident electron spins interact with the surrounding nuclear spins. The observation of RSA in Faraday geometry requires intense pump pulses with a high repetition rate and can be enhanced by means of the spin-inertia effect. Potentially, it provides the most direct and reliable tool to measure the longitudinal g factor of the charge carriers.
机译:我们证明了在法拉第几何形状中实现了谐振旋转扩增(RSA)效应,其中磁场与光学诱导的自旋极化平行施加,从而预期没有RSA。 然而,模型考虑预测,它可以用于与波动的旋转环境相互作用的中央旋转。 作为演示者,我们选择单独充电(IN,GA)AS / GAAS量子点的集合,其中驻留电子旋转与周围的核旋转相互作用。 在法拉第几何中的RSA观察需要具有高重复率的强泵脉冲,并且可以通过旋转惯量效应来增强。 潜在地,它提供最直接且可靠的工具来测量电荷载流子的纵向G系数。

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  • 来源
    《Physical review.B.Condensed matter and materials physics》 |2021年第20期|L201301.1-L201301.7|共7页
  • 作者单位

    Condensed Matter Theory Technische Universitat Dortmund 44221 Dortmund Germany;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany;

    Ioffe Institute Russian Academy of Sciences 194021 St. Petersburg Russia;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany Ioffe Institute Russian Academy of Sciences 194021 St. Petersburg Russia;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany Ioffe Institute Russian Academy of Sciences 194021 St. Petersburg Russia;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany Ioffe Institute Russian Academy of Sciences 194021 St. Petersburg Russia;

    Condensed Matter Theory Technische Universitat Dortmund 44221 Dortmund Germany;

    Experimentelle Phvsik 2 Technische Universitat Dortmund 44221 Dortmund Germany;

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