Vienna Center for Quantum Science and Technology, Atominstitut, Technische Universität Wien, Stadionallee 2, 1020 Vienna, Austria.
Science. 2012 Sep 14;337(6100):1318-22. doi: 10.1126/science.1224953. Epub 2012 Sep 6.
Understanding relaxation processes is an important unsolved problem in many areas of physics. A key challenge is the scarcity of experimental tools for the characterization of complex transient states. We used measurements of full quantum mechanical probability distributions of matter-wave interference to study the relaxation dynamics of a coherently split one-dimensional Bose gas and obtained comprehensive information about the dynamical states of the system. After an initial rapid evolution, the full distributions reveal the approach toward a thermal-like steady state characterized by an effective temperature that is independent from the initial equilibrium temperature of the system before the splitting process. We conjecture that this state can be described through a generalized Gibbs ensemble and associate it with prethermalization.
理解弛豫过程是物理学许多领域中的一个重要未解决问题。一个关键的挑战是缺乏用于描述复杂瞬态状态的实验工具。我们使用物质波干涉的全量子力学概率分布的测量来研究相干分裂的一维玻色气体的弛豫动力学,并获得了有关系统动态状态的综合信息。在初始快速演化之后,全分布揭示了向类似于热的稳态的逼近,其特征在于有效温度与分裂过程之前系统的初始平衡温度无关。我们推测该状态可以通过广义吉布斯系综来描述,并将其与预热化相关联。