Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, 6020 Innsbruck, Austria.
Institut für Experimentalphysik, Universität Innsbruck, 6020 Innsbruck, Austria.
Science. 2016 Oct 7;354(6308):96-99. doi: 10.1126/science.aaf5134.
The fastest possible collective response of a quantum many-body system is related to its excitations at the highest possible energy. In condensed matter systems, the time scale for such "ultrafast" processes is typically set by the Fermi energy. Taking advantage of fast and precise control of interactions between ultracold atoms, we observed nonequilibrium dynamics of impurities coupled to an atomic Fermi sea. Our interferometric measurements track the nonperturbative quantum evolution of a fermionic many-body system, revealing in real time the formation dynamics of quasi-particles and the quantum interference between attractive and repulsive states throughout the full depth of the Fermi sea. Ultrafast time-domain methods applied to strongly interacting quantum gases enable the study of the dynamics of quantum matter under extreme nonequilibrium conditions.
量子多体系统最快的集体响应与它在最高能量下的激发有关。在凝聚态系统中,这种“超快”过程的时间尺度通常由费米能决定。利用对超冷原子相互作用的快速和精确控制,我们观察到杂质与原子费米海耦合的非平衡动力学。我们的干涉测量实时跟踪了费米多体系统的非微扰量子演化,揭示了准粒子的形成动力学以及费米海中整个吸引和排斥态之间的量子干涉。应用于强相互作用量子气体的超快时域方法使我们能够在极端非平衡条件下研究量子物质的动力学。