...
首页> 外文期刊>Physical Review X >Real-Time Dynamics in U(1) Lattice Gauge Theories with Tensor Networks
【24h】

Real-Time Dynamics in U(1) Lattice Gauge Theories with Tensor Networks

机译:u(1)纹身仪表的实时动态

获取原文
           

摘要

Tensor network algorithms provide a suitable route for tackling real-time-dependent problems in lattice gauge theories, enabling the investigation of out-of-equilibrium dynamics. We analyze a U(1) lattice gauge theory in ( 1 + 1 ) dimensions in the presence of dynamical matter for different mass and electric-field couplings, a theory akin to quantum electrodynamics in one dimension, which displays string breaking: The confining string between charges can spontaneously break during quench experiments, giving rise to charge-anticharge pairs according to the Schwinger mechanism. We study the real-time spreading of excitations in the system by means of electric-field and particle fluctuations. We determine a dynamical state diagram for string breaking and quantitatively evaluate the time scales for mass production. We also show that the time evolution of the quantum correlations can be detected via bipartite von Neumann entropies, thus demonstrating that the Schwinger mechanism is tightly linked to entanglement spreading. To present a variety of possible applications of this simulation platform, we show how one could follow the real-time scattering processes between mesons and the creation of entanglement during scattering processes. Finally, we test the quality of quantum simulations of these dynamics, quantifying the role of possible imperfections in cold atoms, trapped ions, and superconducting circuit systems. Our results demonstrate how entanglement properties can be used to deepen our understanding of basic phenomena in the real-time dynamics of gauge theories such as string breaking and collisions.
机译:张量网络算法提供了一种适当的路线,用于解决格式仪表理论中实时依赖性问题,从而能够调查均衡的动态。我们在不同质量和电场耦合的动力学存在下分析U(1)晶格表尺寸的(1 + 1)尺寸,一个尺寸中类似于量子电动力的理论,显示串断开:限制字符串在淬火实验期间,电荷可以自发地断裂,根据Schwinger机制引起充电抗灰色对。我们通过电场和粒子波动研究系统中激励的实时传播。我们确定串断开的动态状态图,并定量评估批量生产的时间尺度。我们还表明,可以通过二分von Neumann熵检测量子相关的时间演变,从而证明Schwinger机构与缠结扩散紧密相关。为了呈现此模拟平台的各种可能的应用,我们展示了如何遵循介子之间的实时散射过程和在散射过程中创建纠缠。最后,我们测试这些动态的量子模拟质量,量化了冷原子,捕获离子和超导电路系统中可能的缺陷的作用。我们的结果表明,如何使用纠缠性能来深化我们对规格突破和碰撞等规格理论的实时动态的基本现象的理解。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号