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Hong-Ou-Mandel experiment for temporal investigation of single-electron fractionalization

机译:Hong-Ou-Mandel实验用于单电子分馏的时间研究

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摘要

Coulomb interaction has a striking effect on electronic propagation in one-dimensional conductors. The interaction of an elementary excitation with neighbouring conductors favours the emergence of collective modes, which eventually leads to the destruction of the Landau quasiparticle. In this process, an injected electron tends to fractionalize into separated pulses carrying a fraction of the electron charge. Here we use two-particle interferences in the electronic analogue of the Hong-Ou-Mandel experiment in a quantum Hall conductor at filling factor 2 to probe the fate of a single electron emitted in the outer edge channel and interacting with the inner one. By studying both channels, we analyse the propagation of the single electron and the generation of interaction-induced collective excitations in the inner channel. These complementary pieces of information reveal the fractionalization process in the time domain and establish its relevance for the destruction of the quasiparticle, which degrades into the collective modes.
机译:库仑相互作用对一维导体中的电子传播具有惊人的影响。基本激发与邻近导体的相互作用促进了集体模式的出现,最终导致了朗道准粒子的破坏。在此过程中,注入的电子趋向于分解成带有一部分电子电荷的分离脉冲。在这里,我们在Hong-Ou-Mandel实验的电子类似物中在填充系数为2的量子霍尔导体中使用两粒子干扰,以探测在外边缘通道中发射并与内边缘通道相互作用的单个电子的命运。通过研究两个通道,我们分析了单个电子的传播以及内部通道中相互作用诱导的集体激发的产生。这些互补的信息揭示了时域中的分级过程,并确定了其与准粒子的破坏的相关性,准粒子的降解成为集体模式。

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