Heidelberg University, Institut für Theoretische Physik, Philosophenweg 16, 69120 Heidelberg, Germany.
Physics Department, Brookhaven National Laboratory, Building 510A, Upton, New York 11973, USA.
Phys Rev Lett. 2019 Feb 8;122(5):050403. doi: 10.1103/PhysRevLett.122.050403.
Aiming at a better understanding of anomalous and topological effects in gauge theories out of equilibrium, we study the real-time dynamics of a prototype model for CP violation, the massive Schwinger model with a θ term. We identify dynamical quantum phase transitions between different topological sectors that appear after sufficiently strong quenches of the θ parameter. Moreover, we establish a general dynamical topological order parameter, which can be accessed through fermion two-point correlators and, importantly, which can be applied for interacting theories. Enabled by this result, we show that the topological transitions persist beyond the weak-coupling regime. Finally, these effects can be observed with tabletop experiments based on existing cold-atom, superconducting-qubit, and trapped-ion technology. Our Letter thus presents a significant step towards quantum simulating topological and anomalous real-time phenomena relevant to nuclear and high-energy physics.
为了更好地理解非平衡规范理论中的异常和拓扑效应,我们研究了 CP 破坏的原型模型——含θ项的磁化 Schwinger 模型的实时动力学。我们在θ参数的强猝灭后识别出不同拓扑区域之间的动力学量子相变。此外,我们建立了一个一般的动力学拓扑序参量,可以通过费米子两点相关函数来获取,重要的是,它可以应用于相互作用理论。基于这一结果,我们表明拓扑相变在弱耦合区之外仍然存在。最后,这些效应可以通过基于现有冷原子、超导量子比特和囚禁离子技术的桌面实验来观察到。因此,我们的信中朝着量子模拟与核物理和高能物理相关的拓扑和异常实时现象迈出了重要的一步。