论文标题

在三个维度上的Dirac Fermions的抗铁磁过渡

Antiferromagnetic transitions of Dirac fermions in three dimensions

论文作者

Huang, Yiqun, Guo, Huaiming, Maciejko, Joseph, Scalettar, Richard T., Feng, Shiping

论文摘要

我们使用行列式量子蒙特卡洛(DQMC)模拟来研究基于立方晶格上$π$ -Flux模型的三维(3D)DIRAC费米子上的电子相互作用的作用。我们表明,哈伯德相互作用将3D狄拉克半含量驱动到仅在有限的临界相互作用强度上方的防铁磁性(AF)绝缘子上,而远程的AF订单持续到有限的温度。我们使用自旋结构因子的有限尺寸缩放来评估临界相互作用强度和温度。临界行为与量子临界点的(3+1)d Gross-neveu通用类别和热相转换的3D海森伯格通用类别一致。我们进一步研究了双发性狄拉克费米恩系统中的相关效应。发现通过降低狄拉克锥的速度,降低了临界相互作用强度$ u_c $,从而量化了速度对3D Dirac Fermion系统中临界相互作用强度的影响。我们的发现明确发现了3D Dirac Fermions中的相关效应,并且可以使用光学晶格中的Ultracold原子观察到。

We use determinant quantum Monte Carlo (DQMC) simulations to study the role of electron-electron interactions on three-dimensional (3D) Dirac fermions based on the $π$-flux model on a cubic lattice. We show that the Hubbard interaction drives the 3D Dirac semimetal to an antiferromagnetic (AF) insulator only above a finite critical interaction strength and the long-ranged AF order persists up to a finite temperature. We evaluate the critical interaction strength and temperatures using finite-size scaling of the spin structure factor. The critical behaviors are consistent with the (3+1)d Gross-Neveu universality class for the quantum critical point and 3D Heisenberg universality class for the thermal phase transitions. We further investigate correlation effects in birefringent Dirac fermion system. It is found that the critical interaction strength $U_c$ is decreased by reducing the velocity of the Dirac cone, quantifying the effect of velocity on the critical interaction strength in 3D Dirac fermion systems. Our findings unambiguously uncover correlation effects in 3D Dirac fermions, and may be observed using ultracold atoms in an optical lattice.

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