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首页> 外文期刊>Bulletin of the American Physical Society >APS -APS March Meeting 2017 - Event - Electrostatic and Quantum Transport Simulations of Quantum Point Contacts in the Integer Quantum Hall Regime
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APS -APS March Meeting 2017 - Event - Electrostatic and Quantum Transport Simulations of Quantum Point Contacts in the Integer Quantum Hall Regime

机译:APS -APS 2017年3月会议-事件-整数量子霍尔区中量子点触点的静电和量子传输模拟

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Quantum Point Contacts (QPCs) are extensively used in semiconductor devices for charge sensing, tunneling and interference experiments. Fabry-P'{e}rot interferometers containing 2 QPCs have applications in quantum computing, in which electrons/quasi-particles undergo interference due to back-scattering from the QPCs. Such experiments have turned out to be difficult because of the complex structure of edge states near the QPC boundary. We present realistic simulations of the edge states in QPCs based on GaAs/AlGaAs heterostructures, which can be used to predict conductance and edge state velocities. Conduction band profile is obtained by solving decoupled effective mass Schr"{o}dinger and Poisson equations self-consistently on a finite element mesh of a realistic geometry. In the integer quantum Hall regime, we obtain compressible and in-compressible regions near the edges. We then use the recursive Green`s function algorithm to solve Schr"{o}dinger equation with open boundary conditions for calculating transmission and local current density in the QPCs. Impurities are treated by inserting bumps in the potential with a Gaussian distribution. We compare observables with experiments for fitting some adjustable parameters.
机译:量子点触点(QPC)广泛用于半导体器件中的电荷感测,隧穿和干扰实验。包含2个QPC的Fabry-P'{e}旋转干涉仪在量子计算中具有应用,其中电子/准粒子由于来自QPC的反向散射而受到干扰。由于QPC边界附近的边缘状态的复杂结构,这样的实验已经变得困难。我们提出了基于GaAs / AlGaAs异质结构的QPC中边缘状态的逼真模拟,可用于预测电导和边缘状态速度。导带轮廓是通过在实际几何形状的有限元网格上自洽解耦的有效质量Schr“ {o} dinger和Poisson方程获得的。然后,我们使用递归格林函数算法求解具有开放边界条件的Schr“ {o} dinger方程,以计算QPC中的传输和局部电流密度。通过在势能中插入具有高斯分布的凸起来处理杂质。我们将可观察值与用于拟合一些可调参数的实验进行比较。

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