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Two-dimensional electron gas under a spatially modulated magnetic field: A test ground for electron-electron scattering in a controlled environment

机译:空间调制磁场下的二维电子气:受控环境中电子电子散射的试验场

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摘要

We have studied the electronic transport in a two-dimensional electron gas (2DEG) subjected to a spatially modulated magnetic field and electrostatic potential. Independent control of the magnetic field components parallel and perpendicular to the 2DEG plane allows us to manipulate the amplitude of the magnetic modulation independently of the normal field component relevant to the magnetotransport in the 2DEG. The amplitudes of the magnetic and electrostatic modulations can be evaluated from an analysis of the commensurability oscillation of magnetoresistance. The increase of resistivity In the presence of a modulated magnetic field at a zero uniform magnetic field is found to be quadratic in the modulation amplitude and to vary as A T-2 + C at low temperatures. This is a signature of the electron-electron scattering in the presence of a spatially modulated magnetic field. The present system provides an ideal test ground for theories of electron-electron-scattering-induced resistivity. [References: 20]
机译:我们已经研究了二维电子气(2DEG)中受到空间调制磁场和静电势的电子传输。平行和垂直于2DEG平面的磁场分量的独立控制使我们能够独立于与2DEG中的磁传输有关的法向磁场分量来操纵磁调制的幅度。可以通过对磁阻的可比性振荡的分析来评估磁和静电调制的幅度。电阻率的增加在零均匀磁场下存在调制磁场的情况下,发现调制幅度的平方是平方的,并且在低温下随A T-2 + C的变化而变化。这是存在空间调制磁场时电子电子散射的特征。本系统为电子-电子散射感应电阻率理论提供了理想的测试基础。 [参考:20]

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