论文标题

相互作用的Andreev自旋的微波光谱

Microwave spectroscopy of interacting Andreev spins

论文作者

Wesdorp, J. J., Matute-Caňadas, F. J., Vaartjes, A., Grünhaupt, L., Laeven, T., Roelofs, S., Splitthoff, L. J., Pita-Vidal, M., Bargerbos, A., van Woerkom, D. J., Krogstrup, P., Kouwenhoven, L. P., Andersen, C. K., Yeyati, A. Levy, van Heck, B., de Lange, G.

论文摘要

Andreev Bound状态是在超导体之间存在薄弱环境中的费米度状态,可以用稀疏的准粒子占据。使用INAS/AL纳米线约瑟夫森连接的超导电路的微波实验最近实现了对Andreev态的探测和相干操纵,但仍限于零或小场。在这里,我们在高达1T的外部磁场中使用通量调节的超导电路,以执行自旋极化的Andreev状态的光谱,最高为〜250 mt,除此之外,频谱变得无间隙。我们通过在磁场中的分散体识别两个准颗粒的单线和三环状态。这些状态通过交换相互作用分割,并通过自旋轨道耦合进行逐对,类似于量子点中的两电子状态。我们还表明,磁场允许驱动被困在结中的单个准粒子的直接自旋过渡。最后,我们测量Andreev频谱的栅极和磁场依赖性异常相位移位,最高为$0.7π$。我们的观察结果展示了在磁场中操纵Andreev状态的新方法,并揭示了带有超电流的自旋偏振三重态。

Andreev bound states are fermionic states localized in weak links between superconductors which can be occupied with spinful quasiparticles. Microwave experiments using superconducting circuits with InAs/Al nanowire Josephson junctions have recently enabled probing and coherent manipulation of Andreev states but have remained limited to zero or small fields. Here we use a flux-tunable superconducting circuit in external magnetic fields up to 1T to perform spectroscopy of spin-polarized Andreev states up to ~250 mT, beyond which the spectrum becomes gapless. We identify singlet and triplet states of two quasiparticles occupying different Andreev states through their dispersion in magnetic field. These states are split by exchange interaction and couple via spin-orbit coupling, analogously to two-electron states in quantum dots. We also show that the magnetic field allows to drive a direct spin-flip transition of a single quasiparticle trapped in the junction. Finally, we measure a gate- and field-dependent anomalous phase shift of the Andreev spectrum, of magnitude up to approximately $0.7π$. Our observations demonstrate new ways to manipulate Andreev states in a magnetic field and reveal spin-polarized triplet states that carry supercurrent.

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