1] Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, Technikerstraße 21a, 6020 Innsbruck, Austria [2] Institut für Experimentalphysik, Universität Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria [3].
1] Institut für Quantenoptik und Quanteninformation, Österreichische Akademie der Wissenschaften, Technikerstraße 21a, 6020 Innsbruck, Austria [2] Institut für Theoretische Physik, Universität Innsbruck, Technikerstraße 25, 6020 Innsbruck, Austria.
Nature. 2014 Jul 10;511(7508):202-5. doi: 10.1038/nature13461.
The key to explaining and controlling a range of quantum phenomena is to study how information propagates around many-body systems. Quantum dynamics can be described by particle-like carriers of information that emerge in the collective behaviour of the underlying system, the so-called quasiparticles. These elementary excitations are predicted to distribute quantum information in a fashion determined by the system's interactions. Here we report quasiparticle dynamics observed in a quantum many-body system of trapped atomic ions. First, we observe the entanglement distributed by quasiparticles as they trace out light-cone-like wavefronts. Second, using the ability to tune the interaction range in our system, we observe information propagation in an experimental regime where the effective-light-cone picture does not apply. Our results will enable experimental studies of a range of quantum phenomena, including transport, thermalization, localization and entanglement growth, and represent a first step towards a new quantum-optic regime of engineered quasiparticles with tunable nonlinear interactions.
解释和控制一系列量子现象的关键在于研究信息如何在多体系统中传播。量子动力学可以通过在基础系统的集体行为中出现的、信息的类粒子载体来描述,这些所谓的准粒子。这些基本激发被预测以由系统相互作用决定的方式分布量子信息。在这里,我们报告了在囚禁原子离子的量子多体系统中观察到的准粒子动力学。首先,我们观察了准粒子在追踪类光锥状波前时所分配的纠缠。其次,利用我们系统中可调谐相互作用范围的能力,我们观察到在有效光锥图像不适用的实验条件下的信息传播。我们的结果将能够对一系列量子现象进行实验研究,包括输运、热化、局域化和纠缠增长,并代表朝着具有可调谐非线性相互作用的工程准粒子的新量子光学领域迈出的第一步。