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首页> 外文期刊>Journal of Communications Technology and Electronics >Electron Transport Through the Contact of Quantum Wire and 3D Electrodes
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Electron Transport Through the Contact of Quantum Wire and 3D Electrodes

机译:电子通过量子线和3D电极的接触进行传输

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摘要

The effect of the electron interaction on the electron transport through the contacts of 1D conductor with 2D and 3D metal electrodes is theoretically studied. The spin-polarized electrons that are described using the Tomonaga-Luttinger Hamiltonian are considered. The boundary conditions for the current and charge density at the boundary of the 1D conductor are derived as functions of the electric potential across electrodes, and the boundary conditions for the fluctuations are obtained. In the case of the nonadia-batic contact, the Friedel oscillations of the charge density that emerge in the vicinity of contact in the ID system strongly suppress the conduction in the system similarly to the effect of impurities in the systems of 1D electrons with repulsion. When the applied voltage exceeds threshold level V_(thr), the conductivity sharply increases and the flow of dc current 7 is accompanied by the generation of the current oscillations with the frequency f= l /e.
机译:理论上研究了电子相互作用对电子通过一维导体与2D和3D金属电极的接触的影响。考虑使用Tomonaga-Luttinger哈密顿量描述的自旋极化电子。导出一维导体边界处的电流和电荷密度的边界条件,作为跨电极电位的函数,并获得波动的边界条件。在非绝热接触的情况下,与ID在带排斥力的一维电子系统中的杂质作用类似,在ID系统中的接触附近出现的电荷密度的弗里德振荡强烈抑制了系统中的导电。当所施加的电压超过阈值电平V_(thr)时,电导率急剧增加,并且直流电流7的流动伴随着频率f = 1 / e的电流振荡的产生。

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