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Strongly anomalous non-thermal fixed point in a quenched two-dimensional Bose gas

机译:二维二维玻色气体中的强异常非热固定点

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Universal scaling behavior in the relaxation dynamics of an isolated two-dimensional Bose gas is studied by means of semi-classical stochastic simulations of the Gross–Pitaevskii model. The system is quenched far out of equilibrium by imprinting vortex defects into an otherwise phase-coherent condensate. A strongly anomalous non-thermal fixed point is identified, associated with a slowed decay of the defects in the case that the dissipative coupling to the thermal background noise is suppressed. At this fixed point, a large anomalous exponent and, related to this, a large dynamical exponent are identified. The corresponding power-law decay is found to be consistent with three-vortex-collision induced loss. The article discusses these aspects of non-thermal fixed points in the context of phase-ordering kinetics and coarsening dynamics, thus relating phenomenological and analytical approaches to classifying far-from-equilibrium scaling dynamics with each other. In particular, a close connection between the anomalous scaling exponent η, introduced in a quantum-field theoretic approach, and conservation-law induced scaling in classical phase-ordering kinetics is revealed. Moreover, the relation to superfluid turbulence as well as to driven stationary systems is discussed.
机译:通过Gross-Pitaevskii模型的半经典随机模拟研究了孤立的二维Bose气体的弛豫动力学中的普遍尺度行为。通过将涡流缺陷烙印到否则为相干的冷凝物中,将系统淬灭,使其失衡。在抑制与热本底噪声的耗散耦合的情况下,可以确定与异常缓慢衰减相关的强烈异常的非热固定点。在这个固定点,识别出一个大的异常指数,并与此相关的是一个大的动态指数。发现相应的幂律衰减与三涡旋碰撞引起的损耗一致。本文在相序动力学和粗化动力学的背景下讨论了非热不动点的这些方面,从而将现象学和分析方法相互联系,以对非平衡定标动力学进行分类。特别地,揭示了在量子场理论方法中引入的反常标度指数η与经典相序动力学中守恒律诱导的标度之间的紧密联系。此外,还讨论了与超流体湍流以及与驱动固定系统的关系。

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