物理
蜂巢
相图
凝聚态物理
订单(交换)
量子自旋液体
变分蒙特卡罗
戒指(化学)
布里渊区
自旋(空气动力学)
相(物质)
量子力学
材料科学
超导电性
自旋极化
化学
热力学
有机化学
财务
经济
复合材料
赫巴德模型
电子
作者
Jiucai Wang,Zheng-Xin Liu
出处
期刊:Physical review
日期:2023-07-31
卷期号:108 (1)
被引量:6
标识
DOI:10.1103/physrevb.108.014437
摘要
Motivated by the possible triple-$\bf Q$ classical order in the Kitaev candidate material Na$_2$Co$_2$TeO$_6$, we investigate microscopic models that may stabilize the triple-$\bf Q$ order by studying an extended Kitaev honeycomb model with ring-exchange interactions (namely, the $K$-$\Gamma$-$\Gamma'$-$J_{\rm R}$ model) using the variational Monte Carlo method. It turns out that with positive ring-exchange interaction ($J_{\rm R}>0$) there indeed appears an exotic non-coplanar triple-$\bf Q$ ordered state featured by three Bragg peaks at symmetry-related M points in the crystallographic Brillouin zone. A magnetic field in the honeycomb plane can suppress the triple-$\bf Q$ order and induce a gapless quantum spin liquid (QSL) with 8 cones. Furthermore, with the increase of $J_{\rm R}$ a proximate Kitaev spin liquid with eight Majorana cones labeled "PKSL8" is found which is very stable over a large range of $\Gamma$ interactions. The PKSL8 state shares the same projective symmetry group with the Kitaev spin liquid (KSL) which is located at small $\Gamma$ and $J_{\rm R}$. In a weak magnetic field applied normal to the honeycomb plane, the PKSL8 turns into an Abelian chiral spin liquid with Chern number $\nu=-4$, unlike the KSL which yields a chiral spin liquid with $\nu=1$. Since the triple-$\bf Q$ phase is adjacent to two QSLs in the phase diagram, our work suggests that it is more hopeful to experimentally realize the exotic QSL phases starting from the triple-$\bf Q$ order.
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