Department of Physics, Boston University, Boston, Massachusetts 02215, USA.
Phys Rev Lett. 2013 Aug 9;111(6):066401. doi: 10.1103/PhysRevLett.111.066401.
We study the quantum phases of fermions with an explicit SU(N)-symmetric, Heisenberg-like nearest-neighbor flavor exchange interaction on the honeycomb lattice at half filling. Employing projective (zero temperature) quantum Monte Carlo simulations for even values of N, we explore the evolution from a weak-coupling semimetal into the strong-coupling, insulating regime. Furthermore, we compare our numerical results to a saddle-point approximation in the large-N limit. From the large-N regime down to the SU(6) case, the insulating state is found to be a columnar valence bond crystal, with a direct transition to the semimetal at weak, finite coupling, in agreement with the mean-field result in the large-N limit. At SU(4) however, the insulator exhibits a subtly different valence bond crystal structure, stabilized by resonating valence bond plaquettes. In the SU(2) limit, our results support a direct transition between the semimetal and an antiferromagnetic insulator.
我们研究了在半填充的蜂窝晶格上具有明确的 SU(N)-对称、海森堡型最近邻费米子交换相互作用的量子相。通过对偶数 N 值的投影(零温)量子蒙特卡罗模拟,我们探索了从弱耦合半金属到强耦合绝缘态的演化。此外,我们将数值结果与大 N 极限下的鞍点近似进行了比较。从大 N 区域下降到 SU(6)情况,发现绝缘态是柱状价带晶体,在弱、有限耦合下直接过渡到半金属,与大 N 极限下的平均场结果一致。然而,在 SU(4)情况下,绝缘体表现出一种微妙不同的价带晶体结构,由共振价带 plaquette 稳定。在 SU(2)极限下,我们的结果支持半金属和反铁磁绝缘态之间的直接转变。