论文标题

Spin-1 Bose气体中的合成U(1)量规不变性

Synthetic U(1) Gauge Invariance in a Spin-1 Bose Gas

论文作者

Gao, Chunping, Liu, Jinghu, Chang, Maolin, Pu, Han, Chen, Li

论文摘要

晶格schwinger模型[自然587,392(2020)和Science 367,1128(2020)]的最新实验实现为基本颗粒及其相互作用的量子模拟打开了一扇门,其中使用Ultracolold Atoms进行了相互作用,其中物质和计量领域受到局部u(1)量规的量规量的限制。受到如此令人兴奋的进步刺激,我们提出了一种新的方案,以模拟Spin-1 Bose-Einstein冷凝物中的晶格Schwinger模型。结果表明,我们的模型自然包含了尊重U(1)规格对称性的物质字段的相互作用,但在常规的Schwinger模型中没有对应物。除了先前工作中确定的Z2级阶段外,这种附加相互作用还导致了一个新的Z3排序相。我们绘制了一个丰富的相图,并确定从dyder的无序和Z3排序的相位分别属于Ising和3态POTTS通用类别的连续相变。此外,两个有序的阶段都具有一组量子疤痕,当淬灭到相图中的特殊点时,会导致异常的量子动力学。我们的建议提供了一个新颖的平台,用于在具有仪表对称性的基于冷原子的量子模拟器中提取新兴物理。

Recent experimental realizations of the lattice Schwinger model [Nature 587, 392 (2020) and Science 367, 1128 (2020)] open a door for quantum simulation of elementary particles and their interactions using ultracold atoms, in which the matter and gauge fields are constrained by a local U(1) gauge invariance known as the Gauss's law. Stimulated by such exciting progress, we propose a new scenario in simulating the lattice Schwinger model in a spin-1 Bose-Einstein condensate. It is shown that our model naturally contains an interaction of the matter fields which respects the U(1) gauge symmetry but has no counterpart in the conventional Schwinger model. In addition to the Z2-ordered phase identified in the previous work, this additional interaction leads to a new Z3-ordered phase. We map out a rich phase diagram and identify that the continuous phase transitions from the disordered to the Z2-ordered and the Z3-ordered phases belong to the Ising and the 3-state Potts universality classes, respectively. Furthermore, the two ordered phases each possess a set of quantum scars which give rise to anomalous quantum dynamics when quenched to a special point in the phase diagram. Our proposal provides a novel platform for extracting emergent physics in cold-atom-based quantum simulators with gauge symmetries.

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