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首页> 外文期刊>Physical Review, B. Condensed Matter >Single-electron magnetoconductivity of a nondegenerate two-dimensional electron system in a quantizing magnetic field - art. no. 165326
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Single-electron magnetoconductivity of a nondegenerate two-dimensional electron system in a quantizing magnetic field - art. no. 165326

机译:量子磁场中简并二维电子系统的单电子磁导率-技术没有。 165326

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摘要

We study transport properties of a nondegenerate two-dimensional system of noninteracting electrons in the presence of a quantizing magnetic field and a short-range disorder potential. We show that the low-frequency magnetoconductivity displays a strongly asymmetric peak at a nonzero frequency. The shape of the peak is restored from the calculated 14 spectral moments, the asymptotic form of its high-frequency tail, and the scaling behavior of the conductivity for omega -->0. We also calculate ten spectral moments of the cyclotron resonance absorption peak, and restore the corresponding (nonsingular) frequency dependence using the continuous fraction expansion. Both expansions converge rapidly with an increasing number of included moments, and give numerically accurate results throughout the region of interest. We discuss the possibility of an experimental observation of the predicted effects for electrons on helium. [References: 32]
机译:我们研究了在量子磁场和短距离无序电势存在下非相互作用电子的非退化二维系统的输运性质。我们表明,低频磁导率在非零频率处显示出强烈的不对称峰。从计算出的14个频谱矩,其高频尾部的渐近形式以及电导率在Ω-> 0的缩放行为中恢复了峰的形状。我们还计算了回旋共振吸收峰的十个频谱矩,并使用连续分数扩展恢复了相应的(非奇异)频率依赖性。两种扩展都随着包含的矩数的增加而迅速收敛,并在整个感兴趣区域内给出数值精确的结果。我们讨论了对氦气上电子的预测效应进行实验观察的可能性。 [参考:32]

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