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首页> 外文期刊>Physical Review, B. Condensed Matter >Enhancement of the skyrmionic excitations due to the suppression of Zeeman energy by optical orientation of nuclear spins
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Enhancement of the skyrmionic excitations due to the suppression of Zeeman energy by optical orientation of nuclear spins

机译:由于核自旋的光学取向抑制塞曼能量,增强了天空离子激发

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摘要

An effective experimental method for compensation of Zeeman energy of two-dimensional (2D) electrons based on optical pumping of nuclear spins is proposed and used to enhance skyrmionic excitations under conditions of integer and fractional quantum Hall effect. We demonstrate that photoexcitation by circularly polarized light can result in a strong spin orientation of nuclei along (or against) the direction of the external magnetic field and that the energy of the hyperfine contact interaction between 2D electrons and optically oriented nuclear spins can be comparable to the electronic Zeeman energy. It is shown that a compensation of the Zeeman energy by the hyperfine interaction at fixed magnetic field results in an enhancement of skyrmionic excitations and the dependence of the skyrmionic radius as a function of the ratio between Zeeman and Coulomb energies is measured. A strong increase of the skyrmion radius is observed for E-Z/E-C<0.005, and the quenching of the skyrmion at E-Z/E-C = 0.011 +/- 0.001 is established. Strong electron-nuclear coupling was used for optical detection of the nuclear magnetic resonance from the variation of the polarized luminescence intensity. [S0163-1829(99)12527-X]. [References: 22]
机译:提出了一种有效的基于核自旋光泵浦补偿二维(2D)电子塞曼能量的实验方法,并在整数和分数量子霍尔效应条件下增强了天空离子的激发。我们证明了圆偏振光的光激发可以导致原子核沿着(或逆着)外部磁场的方向发生强烈的自旋取向,并且二维电子与光学取向的核自旋之间的超精细接触相互作用的能量可以与电子塞曼能量。结果表明,在固定磁场下通过超精细相互作用对塞曼能量的补偿导致了天空离子激发的增强,并且测量了天空离子半径与塞曼能量与库仑能量之比的函数关系。对于E-Z / E-C <0.005,观察到了天蝎子半径的强烈增加,并且建立了在E-Z / E-C = 0.011 +/- 0.001时对天蝎子的淬灭。通过极化发光强度的变化,将强电子-核耦合用于核磁共振的光学检测。 [S0163-1829(99)12527-X]。 [参考:22]

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