论文标题

磁场下三角形SU(3)海森堡模型的量子和热相变

Quantum and Thermal Phase Transitions of the Triangular SU(3) Heisenberg Model under Magnetic Fields

论文作者

Yamamoto, Daisuke, Suzuki, Chihiro, Marmorini, Giacomo, Okazaki, Sho, Furukawa, Nobuo

论文摘要

我们在存在磁场的情况下研究三角形晶格上SU(3)海森堡模型的量子和热相变现象。对具有密度 - 高质量 - 肾上腺剂求解器的大尺寸簇均值计算进行缩放分析,我们揭示了从大规模退化的经典地面歧管中选择的量子相。到饱和度的磁化过程反映了三个不同的磁相。低场相和高场相具有很强的nematic性质,尤其是后者只有通过从标准旋转和四极性描述中对对称发生器进行非平凡的重建。我们还执行半古典蒙特卡洛模拟,以表明热波动也更喜欢相同的三个阶段。此外,我们发现,由于低场相和高场相的nematicity,发生了由分数(半)涡流的结合解析驱动的外来拓扑相变。还讨论了碱 - 地球样冷原子可能实现的实验实现。

We study the quantum and thermal phase transition phenomena of the SU(3) Heisenberg model on triangular lattice in the presence of magnetic fields. Performing a scaling analysis on large-size cluster mean-field calculations endowed with a density-matrix-renormalization-group solver, we reveal the quantum phases selected by quantum fluctuations from the massively degenerate classical ground-state manifold. The magnetization process up to saturation reflects three different magnetic phases. The low- and high-field phases have strong nematic nature, and especially the latter is found only via a nontrivial reconstruction of symmetry generators from the standard spin and quadrupolar description. We also perform a semiclassical Monte Carlo simulations to show that thermal fluctuations prefer the same three phases as well. Moreover, we find that exotic topological phase transitions driven by the binding-unbinding of fractional (half-)vortices take place, due to the nematicity of the low- and high-field phases. Possible experimental realization with alkaline-earth-like cold atoms is also discussed.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源