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Quantum Phase Coherence in Mesoscopic Transport Devices with Two-Particle Interaction

机译:具有双粒子相互作用的介观运输装置中量子相干装置

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摘要

In this paper we demonstrate a new type of quantum phase coherence (QPC), which is generated by the two-body interaction. This conclusion is based on quantum master equation analysis for the full counting statistics of electron transport through two parallel quantum-dots with antiparallel magnetic fluxes in order to eliminate the Aharonov-Bohm interference of either single-particle or non-interacting two-particle wave functions. The interacting two-particle QPC is realized by the flux-dependent oscillation of the zero-frequency cumulants including the shot noise and skewness with a characteristic period. The accurately quantized peaks of cumulant spectrum may have technical applications to probe the two-body Coulomb interaction.
机译:在本文中,我们展示了一种新型的量子相干(QPC),其由双体相互作用产生。该结论是基于量子母部方程分析,用于通过两个并联磁通量通过两个平行量子点的电子传输的全部计数统计分析,以消除单粒子或非相互作用的双粒子波函数的Aharonov-BoHM干扰。通过零频率累积物的助熔剂振荡来实现相互作用的双粒子QPC,包括射击噪声和具有特征期的偏光。累积谱的精确量化峰可以具有探测双体库仑相互作用的技术应用。

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