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首页> 外文期刊>Physical review letters >Low-Magnetic-Field Divergence of the Electronic g Factor Obtained from the Cyclotron Spin-Flip Mode of the v = 1 Quantum Hall Ferromagnet
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Low-Magnetic-Field Divergence of the Electronic g Factor Obtained from the Cyclotron Spin-Flip Mode of the v = 1 Quantum Hall Ferromagnet

机译:从v = 1量子霍尔铁磁体的回旋加速器自旋翻转模式获得的电子g因子的低磁场散度

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摘要

We report an inelastic light scattering study of the cyclotron spin-flip mode in the two-dimensional electron system at filling v = 1. The energy of this mode can serve as a probe of the many-body exchange interaction on short length scales. Its magnetic field dependence is compared with predictions based on Hartree-Fock theory. They agree well when including the nonzero width of the electron system. From the measured energies, the exchange enhanced g factor is extracted. It diverges at small fields and differs largely from g factors obtained via transport activation studies.
机译:我们报告了在填充v = 1时二维电子系统中回旋加速器自旋翻转模式的非弹性光散射研究。该模式的能量可以作为短尺度上多体交换相互作用的探针。将其磁场依赖性与基于Hartree-Fock理论的预测进行了比较。当包括电子系统的非零宽度时,它们非常一致。从测得的能量中,提取出交换增强的g因子。它在小范围内发散,与通过运输活化研究获得的g因子有很大差异。

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