论文标题
开放多体系统中对称性违规的扩散到波力跨界
Diffusive-to-ballistic crossover of symmetry violation in open many-body systems
论文作者
论文摘要
量子多体系统中的保护定律在其动态行为中起着直接的作用。因此,理解由于相干和不相互错误而导致的弱打破保护定律的影响至关重要,例如,在实现可靠的量子模拟器中。在这项工作中,我们执行确切的数字和时间依赖性的扰动理论,以研究\ textit {对称违规}在量子多体系统中的动力学,其本地和全球对称性略有相干(强度$λ$)或不连贯(强度$γ$)。我们严格地证明违反对称性是希尔伯特空间中的分歧措施。基于这一点,我们表明对称性破坏会导致从发病时间的扩散行为到中间时间的弹道或高表现量表的分流增长,然后长时间扩散占主导地位。更确切地说,我们表明,对于本地错误,对对称性违规行为的领先连贯贡献不能低于$ \ proptoλt^2 $,而其前阶不相互分的对应物通常是订单$ \ propto的γt$。在投影仪中的较高订单上,在对称扇区(超级)扇区的较高订单上也观察到了统一和不一致的量表之间的显着相互作用。由于其在短时间内发生,预计在现代超电原子和NISQ设备实验中,扩散到焊接的跨界也可以轻松访问。
Conservation laws in a quantum many-body system play a direct role in its dynamic behavior. Understanding the effect of weakly breaking a conservation law due to coherent and incoherent errors is thus crucial, e.g., in the realization of reliable quantum simulators. In this work, we perform exact numerics and time-dependent perturbation theory to study the dynamics of \textit{symmetry violation} in quantum many-body systems with slight coherent (at strength $λ$) or incoherent (at strength $γ$) breaking of their local and global symmetries. We rigorously prove the symmetry violation to be a divergence measure in Hilbert space. Based on this, we show that symmetry breaking generically leads to a crossover in the divergence growth from diffusive behavior at onset times to ballistic or hyperballistic scaling at intermediate times, before diffusion dominates at long times. More precisely, we show that for local errors the leading coherent contribution to the symmetry violation cannot be of order lower than $\proptoλt^2$ while its leading-order incoherent counterpart is typically of order $\proptoγt$. This remarkable interplay between unitary and incoherent gauge-breaking scalings is also observed at higher orders in projectors onto symmetry (super)sectors. Due to its occurrence at short times, the diffusive-to-ballistic crossover is expected to be readily accessible in modern ultracold-atom and NISQ-device experiments.