论文标题

大规模$ 2+1 $ D $ \ MATHRM {u}(1)$量表理论具有动态物质在冷原子量子模拟器中

Large-Scale $2+1$D $\mathrm{U}(1)$ Gauge Theory with Dynamical Matter in a Cold-Atom Quantum Simulator

论文作者

Osborne, Jesse, McCulloch, Ian P., Yang, Bing, Hauke, Philipp, Halimeh, Jad C.

论文摘要

量子模拟器技术的主要驱动力是在高度控制和可调性下探测合成量子物质设置中的高能现象的前景。在这里,我们提出了一个实验可行的实现,以实验可行的$ 2+1+1 $ d $ \ mathrm {u}(1)$量规理论,具有动力学物质和仪表字段,并具有带有无旋转玻色子的冷原子量子模拟器。我们将相应的高斯定律的完整映射介绍给玻璃纤维计算基础。然后,我们表明,在二维单物种玻色(Bose)中,可以通过新兴的量规保护项忠实地实现和稳定目标量规理论,即沿着两个方向的两个空间周期,因此仅需要在当前的冷原子设置中可用的中等实验资源。使用无限基质产品状态,我们计算绝热扫描和全局淬火动力学的数值基准,以进一步确认映射的保真度。我们的工作使量规理论的量子模拟器在研究较高空间维度的粒子物理学方面迈出了重要的一步,并且在现有的冷原子平台中很容易实现。

A major driver of quantum-simulator technology is the prospect of probing high-energy phenomena in synthetic quantum matter setups at a high level of control and tunability. Here, we propose an experimentally feasible realization of a large-scale $2+1$D $\mathrm{U}(1)$ gauge theory with dynamical matter and gauge fields in a cold-atom quantum simulator with spinless bosons. We present the full mapping of the corresponding Gauss's law onto the bosonic computational basis. We then show that the target gauge theory can be faithfully realized and stabilized by an emergent gauge protection term in a two-dimensional single-species Bose--Hubbard optical Lieb superlattice with two spatial periods along either direction, thereby requiring only moderate experimental resources already available in current cold-atom setups. Using infinite matrix product states, we calculate numerical benchmarks for adiabatic sweeps and global quench dynamics that further confirm the fidelity of the mapping. Our work brings quantum simulators of gauge theories a significant step forward in terms of investigating particle physics in higher spatial dimensions, and is readily implementable in existing cold-atom platforms.

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