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首页> 外文期刊>Physica, B. Condensed Matter >Anomalous carrier lifetime enhancement and effective mass discontinuity observed during magnetic-field-induced subband depopulation in a wide parabolic quantum well
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Anomalous carrier lifetime enhancement and effective mass discontinuity observed during magnetic-field-induced subband depopulation in a wide parabolic quantum well

机译:在宽抛物线形量子阱中的磁场引起的子带减集期间观察到异常的载流子寿命增加和有效质量不连续性

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GaAs/AlGaAs wide parabolic quantum wells (WPQWs) contain uniform, quasi-two-dimensional slabs of electrons, with thickness similar to 1000 Angstrom. Electronic subbands are depopulated by magnetic fields B in the well plane. Small additional perpendicular fields induce Shubnikov-de Haas (SdH) oscillations which we use to determine the carrier density, effective mass, and scattering lifetime, throughout the two subband to one subband transition. Densities in each subband are consistent with a model in which electron-electron interactions simply renormalize the parabolic confining potential. Discontinuities in carrier mass and lifetime at depopulation are best explained by a model in which interactions flatten the potential profile. The second subband SdH lifetime is enhanced near depopulation, even though the onset of two subband transport increases sample resistance. Electrons in the lowest subband prove unexpectedly effective in screening local alloy disorder; this does not agree with long-standing explanations for the limited mobility in WPQW structures. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 14]
机译:GaAs / AlGaAs宽抛物线形量子阱(WPQW)包含均匀的准二维电子平板,厚度类似于1000埃。电子子带在阱平面中被磁场B消除。较小的附加垂直场会引起Shubnikov-de Haas(SdH)振荡,在整个两个子带到一个子带的跃迁中,我们用该振荡来确定载波密度,有效质量和散射寿命。每个子带中的密度与一个模型一致,在该模型中,电子与电子的相互作用仅使抛物线约束势重新归一化。载体质量和种群减少时寿命的不连续性最好通过模型进行解释,在该模型中,相互作用会使电位分布平坦。即使两个子带传输的开始增加了采样电阻,第二子带SdH的寿命也会在人口减少时得到延长。最低子带中的电子被证明在筛选局部合金异常方面出乎意料地有效。这与对WPQW结构中活动受限的长期解释不符。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:14]

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