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All-electrical generation and control of odd-frequency s-wave Cooper pairs in double quantum dots

机译:双量子点中奇数频率s波库珀对的全电产生和控制

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摘要

We propose an all-electrical experimental setup to detect and manipulate the amplitude of odd-frequency pairing in a double quantum dot. The odd-frequency pair amplitude is induced from the breakdown of orbital symmetry when Cooper pairs are injected in the double dot with electrons in different dots. When the dot levels are aligned with the Fermi energy, i.e., on resonance, nonlocal Andreev processes are directly connected to the presence of odd-frequency pairing. Therefore, their amplitude can be manipulated by tuning the level positions. The detection of nonlocal Andreev processes by conductance measurements contributes a direct proof of the existence of the odd-frequency pair amplitude and is available using current experimental techniques.
机译:我们提出了一种全电的实验装置来检测和操纵双量子点中奇数频率对的振幅。当将库珀对注入具有不同点中电子的双点中时,轨道对称性的破坏会导致奇数对振幅。当点电平与费米能量对齐时,即在共振时,非局部的安德列夫过程直接与奇数频率对的存在相关。因此,可以通过调整电平位置来控制其幅度。通过电导测量来检测非局部安德列夫过程,直接证明了奇数频率对振幅的存在,并且可以使用当前的实验技术来获得。

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