Competing quantum paramagnetic ground states of the Heisenberg antiferromagnet on the star lattice
Abstract:
We investigate various competing paramagnetic ground states of the Heisenberg antiferromagnet on the two dimensional star lattice which exhibits geometric frustration. Using slave particle mean field theory combined with a projective symmetry group analysis, we examine a variety of candidate spin liquid states on this lattice, including chiral spin liquids, spin liquids with Fermi surfaces of spinons, and nematic spin liquids which break lattice rotational symmetry. Motivated by connection to large-N SU(N) theory as well as numerical exact diagonalization studies, we also examine various valence bond solid (VBS) states on this lattice. Based on a study of energetics using Gutzwiller projected states, we find that a fully gapped spin liquid state is the lowest energy spin liquid candidate for this model. We also find, from a study of energetics using Gutzwiller projected wave functions and bond operator approaches, that this spin liquid is unstable towards two different VBS states -- a VBS state which respects all the Hamitonian symmetries and a VBS state which exhibits $\sqrt{3}\times\sqrt{3}$ order -- depending on the ratio of the Heisenberg exchange couplings on the two inequivalent bonds of the lattice. We compute the triplon dispersion in both VBS states within the bond operator approach and discuss possible implications of our work for future experiments on candidate materials.
研究了二维星形晶格上几何受挫的海森堡反铁磁体的各种竞争量子顺磁基态。通过奴隶粒子平均场理论和投影对称群分析,探讨了包括手性自旋液体、带有费米面的自旋液体和破坏晶格旋转对称性的张力自旋液体在内的多种候选状态。受到大N SU(N)理论和数值精确对角化研究的启发,也考察了该晶格上的各种价键固体态。基于Gutzwiller投影态的能量研究,发现全能隙自旋液体为该模型的最低能量自旋液体候选者。进一步的能态研究表明,这种自旋液体在Gutzwiller投影波函数和键运算方法中不稳定,倾向于形成两种不同的价键固体态:一种保持哈密顿量对称性的VBS态,另一种表现出$sqrt{3}
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