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Exploring new electrical and optical properties of two-subband electron systems.

机译:探索两子带电子系统的新电学和光学特性。

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摘要

We have investigated the physics of a two-subband, two dimensional electron gas (2DEG) system in low temperatures and high magnetic fields. The presence of a second electric subband can have an enormous impact on the physics of such systems. If the second subband is energetically close to the Fermi level, the photoluminescence (PL) intensity can be modulated to oscillate in a similar way as the Shubilikov-de Hass oscillations as the externally applied magnetic field is swept. And the recombination energy displays a step-like behavior. The second set of Landau levels brought about by the populated second subband can mix with the Landau levels of the first subband. This Landau level mixing manifests itself as floating of delocalized states energy in strong magnetic fields and more importantly, re-entrant quantum Hall transition can be observed.; In this thesis, I present first the interesting many-body phenomenon called Fermi-edge enhanced emission. The oscillating emission intensity and the step-like structure in emission energy can be shown to correlate with the relative position of the Fermi level and the second subband. The Fermi edge enhanced emission, however, abruptly ends at nu = 2 and in its place, a new peak with a smaller recombination energy appears suddenly. This new emission peak is not explained by exiting theories regarding PL emissions near low filling factors. We interpret this peak as evidence of a phase transition between an excitonic (bound electron-hole) state to a free (unbound) state. Calculation showing such scenario is plausible is presented. We also present alternative models that shed additional lights on this interesting transition.; Next the physics of Landau level mixing is explored through the theoretical and experimental constructions of a phase diagram on the density vs. magnetic field plane (the n-B plane). This n-B phase diagram shows a distinctly different behavior from the one-subband case. We have observed floating of extended states energy in strong fields and as a consequence, a negative differential Hall resistance (NDHR, drho xy/dB 0) is observed. We believe this NDHR is a precursor to the long sought re-entrant quantum Hall transition.; Finally we present strong evidence for the re-entrant quantum Hall transition. We have investigated the carrier density, magnetic fields, and temperature evolutions of reentrant integer quantum Hall effects. Our data confirm that whenever Landau levels cross, re-entrant quantum Hall effect can be observed.
机译:我们研究了在低温和高磁场下两子带二维电子气(2DEG)系统的物理性质。第二个电子子带的存在可能会对此类系统的物理产生巨大影响。如果第二子带在能量上接近费米能级,则可以通过扫描外部施加的磁场来调制光致发光(PL)强度,使其与Shubilikov-de Hass振荡类似。并且重组能表现出阶梯状的行为。由填充的第二子带带来的第二组Landau级别可以与第一子带的Landau级别混合。这种兰道能级混合表现为强磁场中离域态能量的浮动,更重要的是,可以观察到凹入的量子霍尔跃迁。在本文中,我首先介绍了一个有趣的多体现象,称为费米边缘增强发射。可以显示出振荡能量的发射强度和阶梯状结构与费米能级和第二子带的相对位置相关。费米边缘增强的发射突然在nu = 2处终止,并在其位置突然出现了具有较小重组能的新峰。现有的关于低填充因子附近的PL排放的理论无法解释这个新的排放峰值。我们将此峰解释为激子(束缚电子-空穴)状态到自由(未束缚)状态之间相变的证据。提出了表明这种情况合理的计算。我们还提出了替代模型,为这种有趣的过渡提供了更多启示。接下来,通过在密度与磁场平面(n-B平面)上的相图的理论和实验构造,探索Landau能级混合的物理原理。此n-B相图显示了与一子带情况截然不同的行为。我们已经观察到强场中扩展态能量的浮动,结果,观察到负的差分霍尔电阻(NDHR,drho xy / dB <0)。我们认为,该NDHR是长期寻求的可重入量子霍尔过渡的先驱。最后,我们提供了可重入的量子霍尔跃迁的有力证据。我们研究了重入整数量子霍尔效应的载流子密度,磁场和温度演化。我们的数据证实,只要Landau能级相交,就可以观察到可重入的量子霍尔效应。

著录项

  • 作者

    Lee, Xiang Yang.;

  • 作者单位

    University of California, Los Angeles.;

  • 授予单位 University of California, Los Angeles.;
  • 学科 Physics Condensed Matter.; Engineering Electronics and Electrical.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 131 p.
  • 总页数 131
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无线电电子学、电信技术;
  • 关键词

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