Haxell Daniel Z, Coraiola Marco, Sabonis Deividas, Hinderling Manuel, Ten Kate Sofieke C, Cheah Erik, Krizek Filip, Schott Rüdiger, Wegscheider Werner, Belzig Wolfgang, Cuevas Juan Carlos, Nichele Fabrizio
IBM Research Europe-Zurich, 8803, Rüschlikon, Switzerland.
Laboratory for Solid State Physics, ETH Zürich, 8093, Zürich, Switzerland.
Nat Commun. 2023 Oct 26;14(1):6798. doi: 10.1038/s41467-023-42357-5.
Light-matter coupling allows control and engineering of complex quantum states. Here we investigate a hybrid superconducting-semiconducting Josephson junction subject to microwave irradiation by means of tunnelling spectroscopy of the Andreev bound state spectrum and measurements of the current-phase relation. For increasing microwave power, discrete levels in the tunnelling conductance develop into a series of equally spaced replicas, while the current-phase relation changes amplitude and skewness, and develops dips. Quantitative analysis of our results indicates that conductance replicas originate from photon assisted tunnelling of quasiparticles into Andreev bound states through the tunnelling barrier. Despite strong qualitative similarities with proposed signatures of Floquet-Andreev states, our study rules out this scenario. The distortion of the current-phase relation is explained by the interaction of Andreev bound states with microwave photons, including a non-equilibrium Andreev bound state occupation. The techniques outlined here establish a baseline to study light-matter coupling in hybrid nanostructures and distinguish photon assisted tunnelling from Floquet-Andreev states in mesoscopic devices.
光与物质的耦合能够实现对复杂量子态的控制与工程设计。在此,我们通过安德烈夫束缚态谱的隧穿光谱以及电流-相位关系的测量,研究了一个受微波辐照的超导-半导体混合约瑟夫森结。随着微波功率的增加,隧穿电导中的离散能级发展成为一系列等间距的副本,而电流-相位关系则改变了幅度和偏度,并出现了凹陷。对我们结果的定量分析表明,电导副本源于准粒子通过隧穿势垒光子辅助隧穿进入安德烈夫束缚态。尽管与所提出的弗洛凯-安德烈夫态的特征有很强的定性相似性,但我们的研究排除了这种情况。电流-相位关系的畸变是由安德烈夫束缚态与微波光子的相互作用所解释的,包括非平衡安德烈夫束缚态占据。这里概述的技术为研究混合纳米结构中的光与物质耦合以及区分介观器件中的光子辅助隧穿与弗洛凯-安德烈夫态建立了一个基线。