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几何阻挫伊辛模型的量子猝灭动力学

Quantum quench dynamics of geometrically frustrated Ising models.

作者信息

Ali Ammar, Xu Hanjing, Bernoudy William, Nocera Alberto, King Andrew D, Banerjee Arnab

机构信息

Department of Physics and Astronomy, Purdue University, West Lafayette, IN, USA.

Department of Computer Science, Purdue University, West Lafayette, IN, USA.

出版信息

Nat Commun. 2024 Dec 30;15(1):10756. doi: 10.1038/s41467-024-54701-4.

Abstract

Geometric frustration in two-dimensional Ising models allows for a wealth of exotic universal behavior, both Ising and non-Ising, in the presence of quantum fluctuations. In particular, the triangular antiferromagnet and Villain model in a transverse field can be understood through distinct XY pseudospins, but have qualitatively similar phase diagrams including a quantum phase transition in the (2+1)-dimensional XY universality class. While the quantum dynamics of modestly-sized systems can be simulated classically using tensor-based methods, these methods become infeasible for larger lattices. Here we perform both classical and quantum simulations of these dynamics, where our quantum simulator is a superconducting quantum annealer. Our observations on the triangular lattice suggest that the dominant quench dynamics are not described by the quantum Kibble-Zurek scaling of the quantum phase transition, but rather a faster coarsening dynamics in an effective two-dimensional XY model in the ordered phase. Similarly, on the Villain model, the scaling exponent does not match the Kibble-Zurek expectation. These results demonstrate the ability of quantum annealers to perform coherent quantum dynamics simulations that are hard to classically scale beyond small systems, and open the avenue to predictive simulations of the dynamics of Ising magnetic materials on quantum simulators.

摘要

二维伊辛模型中的几何阻挫在量子涨落存在的情况下会产生大量奇异的普适行为,包括伊辛型和非伊辛型。特别地,横向场中的三角反铁磁体和维兰模型可以通过不同的XY赝自旋来理解,但具有定性相似的相图,包括处于(2 + 1)维XY普适类中的量子相变。虽然适度大小系统的量子动力学可以使用基于张量的方法进行经典模拟,但对于更大的晶格,这些方法变得不可行。在这里,我们对这些动力学进行了经典和量子模拟,其中我们的量子模拟器是一个超导量子退火器。我们在三角晶格上的观察结果表明,主导的猝灭动力学不是由量子相变的量子基布尔-祖雷克标度描述的,而是由有序相中有效二维XY模型中更快的粗化动力学描述的。同样,在维兰模型上,标度指数与基布尔-祖雷克预期不匹配。这些结果证明了量子退火器执行相干量子动力学模拟的能力,这种模拟在经典情况下很难扩展到小系统之外,并为在量子模拟器上对伊辛磁性材料的动力学进行预测性模拟开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2524/11686204/0483332b969f/41467_2024_54701_Fig1_HTML.jpg

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