论文标题
竞争性激发命令的理论隔热$ _2 $单层
Theory of competing excitonic orders in insulating WTe$_2$ monolayers
论文作者
论文摘要
我们开发了一种最近提出的激子阶段的理论,即单层WTE $ _2 $中观察到的零场绝缘状态。使用Hartree-fock近似,我们从数值上识别两个不同的间隙激子阶段:旋转密度波状态,用于弱非零相互作用强度和在更强相互作用下的旋转螺旋顺序,并由非excitonic量子量子旋转厅绝缘子的狭窄窗口隔开。我们引入了一个简化的模型,捕获了WTE $ _2 $带结构的关键特征,其中这些阶段显示为不同的山谷铁磁订单。我们将激子阶段之间的竞争与费米表面的电子波函数的轨道结构联系起来,从而靠近wte $ _2 $中的基本间隙迪拉克点。我们简要讨论了两个激子状态的集体模式,并就实验的影响发表评论。
We develop a theory of the excitonic phase recently proposed as the zero-field insulating state observed near charge neutrality in monolayer WTe$_2$. Using a Hartree-Fock approximation, we numerically identify two distinct gapped excitonic phases: a spin density wave state for weak non-zero interaction strength and spin spiral order at stronger interactions, separated by a narrow window of non-excitonic quantum spin Hall insulator. We introduce a simplified model capturing key features of the WTe$_2$ band structure, in which these phases appear as distinct valley ferromagnetic orders. We link the competition between the excitonic phases to the orbital structure of electronic wavefunctions at the Fermi surface and hence its proximity to the underlying gapped Dirac point in WTe$_2$. We briefly discuss collective modes of the two excitonic states, and comment on implications for experiments.