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Cyclotron resonance in ultra-low-hole-density narrow p-type GaAs/(Al,Ga)As quantum wells

机译:超低孔密度窄p型GaAs /(Al,Ga)As量子阱中的回旋共振

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摘要

The cyclotron-resonance behavior of a series of p-type, low ps, asymmetrically doped (311)A quantum wells has been measured over two orders of magnitude in energy. Landau levels for the structures studied have been calculated for comparison with experiment. The calculations use a rotated Luttinger Hamiltonian and invoke the axial approximation. In the quantum limit and at certain far-infrared energies we observe two resonances widely separated in field. We find at the lowest fields that the samples exhibit a light effective mass. For the narrowest quantum well the cyclotron resonance (CR) broadens and shifts to a slightly lighter mass into the quantum limit, above about 2 T. The CR energy is modeled by inter-Landau-level transitions from the highest level, and a discontinuous evolution to a higher effective mass, observed as the second resonance above 8 T, is explained by crossing of the highest two Landau levels, as modeled in the calculation. The discontinuous evolution to a higher mass is found to shift to lower fields as the well width increases, as suggested from the modeling. For the wider quantum wells the influence of additional anticrossings at intermediate fields, due to the proximity of the second subband, is observed. CR energy for these samples is adequately modeled at energies above and below the region of subband anticrossing. The limitations of the modeling procedure have been discussed and a number of features of the experimental data are explained qualitatively in terms of the expected modifications to the hole Landau-level structure when full Landau-level mixing is incorporated into the modeling. The influence of hole-hole interactions and factors influencing the CR scattering time are also discussed briefly.
机译:一系列p型,低ps,不对称掺杂(311)A量子阱的回旋共振特性已在两个数量级的能量上进行了测量。已计算出所研究结构的Landau水平,以便与实验进行比较。计算使用旋转的Luttinger哈密顿量,并调用轴向近似值。在量子极限和某些远红外能量下,我们观察到两个共振在电场中被广泛分离。我们发现在最低的领域样品显示出有效的质量。对于最窄的量子阱,回旋加速器共振(CR)变宽并移至量子极限,即超过约2 T的量子极限。CR能量通过从最高能级的兰道能级跃迁和不连续演化来建模如在计算中建模的那样,通过最高的两个朗道能级的交叉解释了在8 T以上的第二次共振中观察到的更高的有效质量。如建模所建议的,发现随着井宽度的增加,向较高质量的不连续演化将转移至较低的油田。对于较宽的量子阱,由于第二子带的接近,观察到在中间场处的附加抗交叉的影响。这些样本的CR能量可以在子带抗交叉区域的上方和下方的能量下充分建模。讨论了建模程序的局限性,并在将完全的Landau级混合纳入模型时,根据对孔Landau级结构的预期修改,定性地解释了实验数据的许多特征。还简要讨论了孔-孔相互作用的影响以及影响CR散射时间的因素。

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