论文标题
量子干扰和分子Andreev干涉仪中的Josephson电流
Quantum interference and nonequilibrium Josephson current in molecular Andreev interferometers
论文作者
论文摘要
我们在非平衡条件下研究了基于多芳烃(PAH)的三端Andreev干涉仪中的量子干扰(QI)效应。 Andreev干涉仪由一个与两个超导和一个正常导电端子耦合的PAH组成。我们计算在非平衡条件下超导终端之间测量的电流以及在超导终端之间的电流。我们表明,在PAH核心中引起的气值和应用于正常接触的偏置电压都对与Andreeved Bound状态(ABS)相关的电荷分布都有根本的影响。气可以导致正常电流对超导相位差的特殊依赖性,而在介质的Andreev干涉仪的早期研究中未观察到。我们通过在电子和孔状的准粒子的空间分布中引起的不对称性来解释我们的结果。在中央PAH核心引起的非平衡电荷占领可能会导致超级电流的电流相关中的$π$转变,对于正常铅上的足够大的施加偏置电压。电子和孔状的准粒子的空间分布中的不对称性可用于拆分库珀对,因此在四个末端设置中产生纠缠的电子。
We study the quantum interference (QI) effects in three-terminal Andreev interferometers based on polyaromatic hydrocarbons (PAH's) under non-equilibrium conditions. The Andreev interferometer consists of a PAH coupled to two superconducting and one normal conducting terminals. We calculate the current measured in the normal lead as well as the current between the superconducting terminals under non-equilibrium conditions. We show that both the QI arising in the PAH cores and the bias voltage applied to a normal contact have a fundamental effect on the charge distribution associated with the Andreev Bound States (ABS's). QI can lead to a peculiar dependence of the normal current on the superconducting phase difference that was not observed in earlier studies of mesoscopic Andreev interferometers. We explain our results by an induced asymmetry in the spatial distribution of the electron- and hole-like quasiparticles. The non-equilibrium charge occupation induced in the central PAH core can result in a $π$ transition in the current-phase relation of the supercurrent for large enough applied bias voltage on the normal lead. The asymmetry in the spatial distribution of the electron- and hole-like quasiparticles might be used to split Cooper pairs and hence to produce entangled electrons in four terminal setups.