Relaxation in an extended bosonic Josephson junction

J. Mennemann, I. Mazets, Marine Pigneur, H. Stimming, N. Mauser, J. Schmiedmayer, Sebastian Erne
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引用次数: 12

Abstract

We present a detailed analysis of the relaxation dynamics in an extended bosonic Josephson junction. We show that stochastic classical field simulations in three spatial dimensions reproduce the main experimental findings of M. Pigneur et al., Phys. Rev. Lett. 120, 173601 (2018). We give an analytic solution describing the short time evolution through multimode dephasing. For longer times, the observed relaxation to a phase locked state is caused by nonlinear dynamics beyond the sine-Gordon model, persisting even at zero temperature. Finally, we analyze different experimentally relevant trapping geometries and their potential for analogue simulation of the sine-Gordon model out of equilibrium. Our results provide the basis for future experimental implementations aiming to study quantum effects of extended bosonic Josephson junctions.
扩展玻色子约瑟夫森结中的弛豫
本文对扩展玻色子约瑟夫森结中的弛豫动力学进行了详细的分析。我们表明,三维空间的随机经典场模拟再现了M. Pigneur等人的主要实验结果。中国农业科学学报,2018,38(5):481 - 481。我们给出了描述多模减相短时间演化的解析解。在较长时间内,观察到的弛豫到锁相状态是由超出正弦戈登模型的非线性动力学引起的,即使在零温度下也持续存在。最后,我们分析了不同的实验相关捕获几何形状及其在正弦-戈登模型非平衡状态下的模拟模拟潜力。我们的研究结果为进一步研究扩展玻色子约瑟夫森结的量子效应提供了实验基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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