论文标题
晶格量规理论的命运
Fate of Lattice Gauge Theories Under Decoherence
论文作者
论文摘要
对现代量子模拟器和NISQ设备的功能的重大测试是仪表理论的可靠实现,这构成了实施功效的黄金标准。除了不可避免的统一错误外,现实的实验还遭受了逆转的损害,这会损害规格的不变性,因此损害了仪表理论本身。在这里,我们研究了变质对晶格仪理论淬灭动力学的影响。严格将仪表违规识别为量规部门中的分歧措施,我们在短时间内发现,由于在环境偶联强度$γ$上的腐蚀性,它首先增长了$ \simγT$,然后在强度$λ$ podimation $λ$ diodation unitorrors $λ$ do.我们进一步引入了量规理论的背景下的多种量子相干,以量化反向效应效应。两项实验可访问的措施将在这项工作的直接背景下具有独立的兴趣。
A major test of the capabilities of modern quantum simulators and NISQ devices is the reliable realization of gauge theories, which constitute a gold standard of implementational efficacy. In addition to unavoidable unitary errors, realistic experiments suffer from decoherence, which compromises gauge invariance and, therefore, the gauge theory itself. Here, we study the effect of decoherence on the quench dynamics of a lattice gauge theory. Rigorously identifying the gauge violation as a divergence measure in the gauge sectors, we find at short times that it first grows diffusively $\simγt$ due to decoherence at environment-coupling strength $γ$, before unitary errors at strength $λ$ dominate and the violation grows ballistically $\simλ^2t^2$. We further introduce multiple quantum coherences in the context of gauge theories to quantify decoherence effects. Both experimentally accessible measures will be of independent interest beyond the immediate context of this work.