Voronova Nina, Grudinina Anna, Panico Riccardo, Trypogeorgos Dimitris, De Giorgi Milena, Baldwin Kirk, Pfeiffer Loren, Sanvitto Daniele, Ballarini Dario
National Research Nuclear University MEPhI (Moscow Engineering Physics Institute), Kashirskoe shosse 31, 115409, Moscow, Russia.
Russian Quantum Center, Skolkovo IC, Bolshoy boulevard 30 bld. 1, 121205, Moscow, Russia.
Nat Commun. 2025 Jan 7;16(1):466. doi: 10.1038/s41467-024-55119-8.
Macroscopic coherence in quantum fluids allows the observation of interference effects in their wavefunctions, and enables applications such as superconducting quantum interference devices based on Josephson tunneling. The Josephson effect manifests in both fermionic and bosonic systems, and has been well studied in superfluid helium and atomic Bose-Einstein condensates. In exciton-polariton condensates-that offer a path to integrated semiconductor platforms-creating weak links in ring geometries has so far remained challenging. In this work, we realize a Josephson junction in a polariton ring condensate. Using optical control of the barrier, we induce net circulation around the ring and demonstrate both superfluid-hydrodynamic and the Josephson regime characterized by a sinusoidal tunneling current. Our theory in terms of the free-energy landscapes explains the appearance of these regimes using experimental values. These results show that weak links in ring condensates can be explored in optical integrated circuits and hold potential for room-temperature applications.
量子流体中的宏观相干性使得能够观察到其波函数中的干涉效应,并促成了基于约瑟夫森隧穿的超导量子干涉器件等应用。约瑟夫森效应在费米子和玻色子系统中均有体现,并且在超流氦和原子玻色 - 爱因斯坦凝聚体中已得到充分研究。在激子 - 极化子凝聚体中——这为集成半导体平台提供了一条途径——在环形几何结构中创建弱连接至今仍然具有挑战性。在这项工作中,我们在极化子环形凝聚体中实现了一个约瑟夫森结。通过对势垒的光学控制,我们诱导出围绕环的净环流,并展示了以正弦隧穿电流为特征的超流体动力学和约瑟夫森 regime。我们基于自由能景观的理论使用实验值解释了这些 regime的出现。这些结果表明,环形凝聚体中的弱连接可以在光学集成电路中进行探索,并具有室温应用的潜力。