论文标题

超低约瑟夫森连接的动力学相图

Dynamical Phase Diagram of Ultracold Josephson Junctions

论文作者

Xhani, K., Galantucci, L., Barenghi, C. F., Roati, G., Trombettoni, A., Proukakis, N. P.

论文摘要

我们提供了一项完整的研究,以表征在超低量子气中的三维约瑟夫森连接中出现的不同动力学状态。考虑到可变的高度和宽度屏障将被困的超速超流体分为两个储层,我们在初始种群不匹配后分析了种群不平衡动态。我们证明,随着化学势差的增加,系统从约瑟夫森等离子体振荡到耗散性(低和狭窄的障碍物的极限)或自捕获的制度(对于大型和更广泛的屏障)的系统过渡,在我们探索和探索和表征第一次的自链环境之间具有交叉。这项工作超出了标准两模型模型的有效性,它连接了屏障宽度,涡流环和相关的声发射的作用,以及整个交界处的超流体动力学的不同机制,为其实验观察建立了一个框架,该框架被发现在当前的实验范围内。

We provide a complete study of the phase diagram characterising the distinct dynamical regimes emerging in a three-dimensional Josephson junction in an ultracold quantum gas. Considering trapped ultracold superfluids separated into two reservoirs by a barrier of variable height and width, we analyse the population imbalance dynamics following a variable initial population mismatch. We demonstrate that as the chemical potential difference is increased, the system transitions from Josephson plasma oscillations to either a dissipative (in the limit of low and narrow barriers) or a self-trapped regime (for large and wider barriers), with a crossover between the dissipative and the self-trapping regimes which we explore and characterize for the first time. This work, which extends beyond the validity of the standard two-mode model, connects the role of the barrier width, vortex rings and associated acoustic emission with different regimes of the superfluid dynamics across the junction, establishing a framework for its experimental observation, which is found to be within current experimental reach.

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