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Terahertz quantum Hall effect for spin-split heavy-hole gases in strained Ge quantum wells

机译:太赫兹量子霍尔效应用于应变Ge量子阱中自旋分裂的重空穴气体

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摘要

Spin-split heavy-hole gases in strained germanium quantum wells were characterized by polarisation-resolved terahertz time-domain spectroscopy. Effective masses, carrier densities, g-factors, transport lifetimes, mobilities and Rashba spin-splitting energies were evaluated, giving quantitative insights into the influence of strain. The Rashba coefficient was found to lower for samples with higher biaxial compressive strain, while heavy-hole mobilities were enhanced to over $1.5imes {10}^{6}$ cm2 V−1 s−1 at 3 K. This high mobility enabled the observation of the optical quantum Hall effect at terahertz frequencies for spin-split two-dimensional heavy-holes, evidenced as plateaux in the transverse magnetoconductivity at even and odd filling factors.udud
机译:通过极化分辨太赫兹时域光谱对应变锗量子阱中的自旋分裂重孔气体进行了表征。评估了有效质量,载流子密度,g因子,运输寿命,迁移率和Rashba自旋分裂能,从而定量了解了应变的影响。发现具有较高双轴压缩应变的样品的Rashba系数较低,而重孔迁移率在3 K时提高到$ 1.5倍{10} ^ {6} $ cm2 V-1 s-1。这种高迁移率使自旋分裂二维重孔在太赫兹频率处的光学量子霍尔效应的观察结果,证明为偶数和奇数填充因子下横向磁导率的平稳。

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