论文标题

在远离平衡的孤立玻色气体中的双向动态缩放

Bidirectional dynamic scaling in an isolated Bose gas far from equilibrium

论文作者

Glidden, Jake A. P., Eigen, Christoph, Dogra, Lena H., Hilker, Timon A., Smith, Robert P., Hadzibabic, Zoran

论文摘要

在物理学中,理解和分类了非平衡多体现象,类似于将物质平衡状态分类为普遍性类别。从恒星物质到金融市场的任何多体制系统都可以以无数的方式超出平衡。由于许多人也很难进行实验,因此建立适用于不同现象和物理系统的通用原理是一个主要目标。平衡状态分类的核心是在接近相变的系统的自相似空间缩放中看到的普遍性。最近的理论工作和第一个实验证据表明,孤立的多体系统远离平衡的一般表现出动态(时空)的自相似缩放,类似于湍流的级联反应和经典表面生长中的家庭vicsek缩放。在这里,我们观察到分离的淬火原子玻色气体中的双向动态缩放。随着气体的热态和经历玻色的凝结,它显示出颗粒的自相似净流向红外线(较小的动量)和朝向紫外线(较小的长度尺度)的能量。对于红外(IR)和紫外线(UV)动力学,我们发现缩放指数独立于驱动热量的颗粒间相互作用的强度。

Understanding and classifying nonequilibrium many-body phenomena, analogous to the classification of equilibrium states of matter into universality classes, is an outstanding problem in physics. Any many-body system, from stellar matter to financial markets, can be out of equilibrium in a myriad of ways; since many are also difficult to experiment on, it is a major goal to establish universal principles that apply to different phenomena and physical systems. At the heart of the classification of equilibrium states is the universality seen in the self-similar spatial scaling of systems close to phase transitions. Recent theoretical work, and first experimental evidence, suggest that isolated many-body systems far from equilibrium generically exhibit dynamic (spatiotemporal) self-similar scaling, akin to turbulent cascades and the Family-Vicsek scaling in classical surface growth. Here we observe bidirectional dynamic scaling in an isolated quench-cooled atomic Bose gas; as the gas thermalises and undergoes Bose-Einstein condensation, it shows self-similar net flows of particles towards the infrared (smaller momenta) and energy towards the ultraviolet (smaller lengthscales). For both infrared (IR) and ultraviolet (UV) dynamics we find that the scaling exponents are independent of the strength of the interparticle interactions that drive the thermalisation.

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