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首页> 外文期刊>Physical Review, B. Condensed Matter >Spin polarization of strongly interacting two-dimensional electrons: The role of disorder - art. no. 201106
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Spin polarization of strongly interacting two-dimensional electrons: The role of disorder - art. no. 201106

机译:强相互作用的二维电子的自旋极化:无序的作用-艺术。没有。 201106

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摘要

In high-mobility silicon metal-oxide-semiconductor field-effect transistors, the g(*)m(*) inferred indirectly from magnetoconductance and magnetoresistance measurements with the assumption that g(*)mu(B)H(s)=2E(F) are in surprisingly good agreement with g(*)m(*) obtained by direct measurement of Shubnikov-de Haas oscillations. The enhanced susceptibility chi(*)proportional to(g(*)m(*)) exhibits critical behavior of the form chi(*)proportional to(n-n(0))(-alpha). We examine the significance of the field scale H-s derived from transport measurements, and show that this field signals the onset of full spin polarization only in the absence of disorder. Our results suggest that disorder becomes increasingly important as the electron density is reduced toward the transition. [References: 22]
机译:在高迁移率的金属硅氧化物半导体场效应晶体管中,g(*)m(*)是根据g(*)mu(B)H(s)= 2E( F)与通过直接测量Shubnikov-de Haas振荡获得的g(*)m(*)令人惊讶地良好一致。与(g(*)m(*))成正比的增强磁化率chi(*)表现出与(n-n(0))(-alpha)成正比的chi(*)形式的临界行为。我们检查了从传输测量得出的场标度H-s的重要性,并表明该场仅在无障碍的情况下才发出完全自旋极化的信号。我们的结果表明,随着电子密度朝过渡方向降低,无序变得越来越重要。 [参考:22]

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