论文标题
各向异性铁磁Kitaev-heisenberg中的相位和量子相变 - $ \γ$磁铁
Phases and Quantum Phase Transitions in an Anisotropic Ferromagnetic Kitaev-Heisenberg-$\ Γ$ Magnet
论文作者
论文摘要
我们在各向异性(圆环代码)限制中研究旋转$ 1/2 $ feromagnetic heisenberg-kitaev- $γ$模型,以揭示间隙$ z_2 $ z_2 $量子自旋液体之间的量子相变的性质$γ$)。通过同时凝结电荷和磁性电荷($ Z_2 $ Quantum Spin液体的分数激发)获得了过渡。这两种过渡都可以是连续的,并且是去构成量子关键点的示例。对于我们的计算至关重要的是对软电和磁模式的对称实现,这些模式变得至关重要。特别是,我们发现对时间逆转和晶格翻译与后者的对称性产生的批判理论的结构有很大的限制,将其作为Anyon置换对称性对称性,该对称对称是一种明显的自我偶尔结构。我们发现,量子自旋液体与自旋顺序相之间的过渡属于自动修改的Abelian Higgs田间理论,而旋转液体和琐碎的Paramagnet之间的过渡属于自dual $ z_2 $ gauge理论。我们还研究了外部Zeeman场的效果,以显示由于Zeeman场而获得的极化Paramagnet与琐碎的Parmagnet驱动的伪二色相互作用之间的有趣相似性。有趣的是,自旋液体和自旋阶阶段都在各向同性极限中易于识别对应物,并且本计算可能会洞悉与材料相关的各向同性极限中相应的过渡。
We study the spin-$1/2$ ferromagnetic Heisenberg-Kitaev-$Γ$ model in the anisotropic (Toric code) limit to reveal the nature of the quantum phase transition between the gapped $Z_2$ quantum spin liquid and a spin ordered phase (driven by Heisenberg interactions) as well as a trivial paramagnet (driven by pseudo-dipolar interactions, $Γ$). The transitions are obtained by a simultaneous condensation of the Ising electric and magnetic charges-- the fractionalized excitations of the $Z_2$ quantum spin liquid. Both these transitions can be continuous and are examples of deconfined quantum critical points. Crucial to our calculations are the symmetry implementations on the soft electric and magnetic modes that become critical. In particular, we find strong constraints on the structure of the critical theory arising from time reversal and lattice translation symmetries with the latter acting as an anyon permutation symmetry that endows the critical theory with a manifestly self-dual structure. We find that the transition between the quantum spin liquid and the spin-ordered phase belongs to a self-dual modified Abelian Higgs field theory while that between the spin liquid and the trivial paramagnet belongs to a self-dual $Z_2$ gauge theory. We also study the effect of an external Zeeman field to show an interesting similarity between the polarised paramagnet obtained due to the Zeeman field and the trivial paramagnet driven the pseudo-dipolar interactions. Interestingly, both the spin liquid and the spin ordered phases have easily identifiable counterparts in the isotropic limit and the present calculations may shed insights into the corresponding transitions in the material relevant isotropic limit.