论文标题
Landau量化对定期调节的二维电子气体线性磁化的影响
Effect of Landau quantization on linear magnetoresistance of periodically modulated two-dimensional electron gas
论文作者
论文摘要
理论上研究了在空间依赖的经典静电电位的情况下,在存在空间依赖的经典静电电位的情况下,通过将久保公式应用于非局部电导率张量来研究,二维电子气体在垂直磁场中的线性响应。在经典运输方案中,得出了通过均匀电子气体的相关函数的电导率张量的一般表达。对于单向周期电势调制的情况,研究了量达量化必不可少的量子运输状态。除了Shubnikov-de HAAS振荡外,电阻率还可以证明具有较大周期和较小幅度的量子振荡,在温度升高时可以生存。当调制幅度大大超过回旋器能量时,就存在这些振荡,因此通过调制电势从Landau水平形成的Landau子带在能量域中重叠。电阻率张量的两个对角线成分均表明与调制通过调节状态密度的修饰有关的振荡。此外,垂直于调制轴的电阻率分量是由散射辅助跳运输引起的,它显示了与跳动轨道偏移的指导中心通过双循环radius的指导中心移动时,与跳高概率相关的另一种振荡。建议在调制周期大大超过回旋子半径时可以在条件下检测到这种高温振荡。
The linear response of two-dimensional electron gas in a perpendicular magnetic field in the presence of a spatially dependent classically smooth electrostatic potential is studied theoretically, by application of the Kubo formula for nonlocal conductivity tensor. In the classical transport regime, a general expression for the conductivity tensor through the correlation functions of the homogeneous electron gas is derived. The quantum transport regime, when Landau quantization is essential, is studied for the case of unidirectional periodic potential modulation. Apart from the Shubnikov-de Haas oscillations, the resistivity can demonstrate quantum oscillations with larger periods and smaller amplitudes, which survive when temperature increases. These oscillations exist when the modulation amplitude considerably exceeds the cyclotron energy so the Landau subbands, formed out of the Landau levels by the modulation potential, overlap in the energy domain. Both diagonal components of the resistivity tensor demonstrate oscillations related to modification of the density of states by the modulation. In addition, the resistivity component perpendicular to the modulation axis, which is caused by the scattering-assisted hopping transport, shows another kind of oscillations related to enhancement of the hopping probability when the guiding center of cyclotron orbit shifts by the doubled cyclotron radius. It is suggested that such high-temperature oscillations can be detected under conditions when the modulation period considerably exceeds the cyclotron radius.