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Cyclotron resonance studies of strongly coupled double quantum wells in tilted magnetic fields near the quantum and semi-classical limits

机译:在接近量子和半经典极限的倾斜磁场中强耦合双量子阱的回旋共振研究

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Far-infrared cyclotron resonance (CR) spectroscopy has been used to study a pair of strongly coupled two-dimensional electron gases (2DEGs) formed in two GaAs quantum wells separated by a thin AlGaAs barrier. The degree of wave function hybridisation, along with the effect of a magnetic field parallel to the plane of the electron gas, have been investigated near both the quantum and semi-classical limits, corresponding to low and high filling factors, respectively. Near the quantum regime, the CR transitions in a small parallel field reveal anticrossing between the Landau levels associated with different hybridised subbands. The energies and intensities of these transitions change with front gate bias, yielding information on the bias dependence of the wave function hybridisation and the subband energy splitting. Near the semi-classical limit and with strong parallel magnetic fields, two CR peaks are observed. The corresponding cyclotron masses are compared to those expected for non-circular Fermi contours created by anticrossing of the parabolic dispersion curves associated with the coupled 2DEGs. Experimental results in both limits are compared with predictions from self-consistent solutions of Poisson's and Schrodinger's equations. (C) 1998 Elsevier Science B.V. All rights reserved. [References: 6]
机译:远红外回旋共振(CR)光谱已用于研究在由薄AlGaAs势垒分隔的两个GaAs量子阱中形成的一对强耦合二维电子气(2DEG)。在量子和半经典极限(分别对应于低填充因子和高填充因子)附近,已经研究了波函数杂交的程度以及平行于电子气平面的磁场的影响。在量子态附近,一个小的平行场中的CR跃迁揭示了与不同杂化子带相关的Landau能级之间的反交叉。这些跃迁的能量和强度随前栅极偏置而变化,从而产生有关波函数杂交和子带能量分裂的偏置相关性的信息。在半经典极限附近,在强平行磁场的作用下,观察到两个CR峰。将相应的回旋加速器质量与通过与耦合的2DEG关联的抛物线色散曲线的反交所产生的非圆形费米轮廓所期望的回旋加速器质量进行比较。将这两个范围内的实验结果与Poisson和Schrodinger方程的自洽解的预测进行比较。 (C)1998 Elsevier Science B.V.保留所有权利。 [参考:6]

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