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Time dependent electronic transport in chiral edge channels (Reprinted)

机译:手性边缘通道中与时间有关的电子传输(转载)

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We study time dependent electronic transport along the chiral edge channels of the quantum Hall regime, focusing on the role of Coulomb interaction. In the low frequency regime, the a.c. conductance can be derived from a lumped element description of the circuit. At higher frequencies, the propagation equations of the Coulomb coupled edge channels need to be solved. As a consequence of the interchannel coupling, a charge pulse emitted in a given channel fractionalized in several pulses. In particular, Coulomb interaction between channels leads to the fractionalization of a charge pulse emitted in a given channel in several pulses. We finally study how the Coulomb interaction, and in particular the fractionalization process, affects the propagation of a single electron in the circuit. All the above-mentioned topics are illustrated by experimental realizations. (C) 2016 Published by Elsevier B.V.
机译:我们研究沿量子霍尔体系的手性边缘通道的时间依赖性电子传输,重点研究库仑相互作用的作用。在低频状态下,交流电电导可以从电路的集总元件描述中得出。在更高的频率下,需要求解库仑耦合边缘通道的传播方程。作为通道间耦合的结果,在给定通道中发射的电荷脉冲被分成几个脉冲。特别地,通道之间的库仑相互作用导致在给定通道中发射的电荷脉冲在几个脉冲中的分级分离。我们最终研究了库仑相互作用,尤其是分馏过程如何影响电路中单个电子的传播。所有上述主题均通过实验实现进行了说明。 (C)2016由Elsevier B.V.发布

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