论文标题
在Kagome晶格上的Heisenberg模型中Dzyaloshinskii-Moriya相互作用的静态和动力学特征
Static and dynamical signatures of Dzyaloshinskii-Moriya interactions in the Heisenberg model on the kagome lattice
论文作者
论文摘要
最近在CS $ _2 $ cu $ _3 $ snf $ _ {12} $和ycu $ _ {3} $(oh)$ _ {6} $ cl $ _ {3} $的动机上激发了激励(平面外)dzyaloshinskii-moriya交互$ j_d $,它有利于(面内)$ {\ bf q} =(0,0)$磁性订单。通过使用变异的蒙特卡洛(基于Gutzwiller-Projection fermionic Wave函数)和张量 - 网络方法(由无限投影式的配对/单纯形状态构建),我们表明,基态可以在$ j_d/j \ gtrsim 0.03 - 0.03-0.04 $ nep profiel new of gtrsiim $ 0.03 - 0.04 $ new the of Glsim profiel of glsim propient of glssim propine propine of Gapsim propine forgapsiim $ 0.03 - 0.04 $ $ 0.04 $ $ 0.04 $ $ 0.04 $中, Dzyaloshinskii-Moriya相互作用。对于$ j_d/j $的相对较小的磁性设置的值特别与解释Kagome AnteriferRomagnets的低温行为,包括Zncu $ _ {3} $(OH)$ _ {6} $ _ {6} $ Cl $ _ {2} $。此外,我们通过使用变异蒙特卡洛技术来评估自旋动力学结构因子和相应的低能光谱。在磁序的阶段报告了上方的磁通模式上方的激励连续体的存在,类似于CS $ _ {2} $ cu $ _ {3} $ snf $ _ SNF $ _ {12} $在cs $ _ {2} $ _ {2} $ _ {3} $ _ {12} $中检测到的弹性。
Motivated by recent experiments on Cs$_2$Cu$_3$SnF$_{12}$ and YCu$_{3}$(OH)$_{6}$Cl$_{3}$, we consider the ${S=1/2}$ Heisenberg model on the kagome lattice with nearest-neighbor super-exchange $J$ and (out-of-plane) Dzyaloshinskii-Moriya interaction $J_D$, which favors (in-plane) ${\bf Q}=(0,0)$ magnetic order. By using both variational Monte Carlo (based upon Gutzwiller-projected fermionic wave functions) and tensor-network approaches (built from infinite projected-entangled pair/simplex states), we show that the ground state develops a finite magnetization for $J_D/J \gtrsim 0.03 - 0.04$, while the gapless spin liquid remains stable for smaller values of the Dzyaloshinskii-Moriya interaction. The relatively small value of $J_D/J$ for which magnetic order sets in is particularly relevant for the interpretation of low-temperature behaviors of kagome antiferromagnets, including ZnCu$_{3}$(OH)$_{6}$Cl$_{2}$. In addition, we assess the spin dynamical structure factors and the corresponding low-energy spectrum, by using the variational Monte Carlo technique. The existence of a continuum of excitations above the magnon modes is reported within the magnetically ordered phase, similarly to what has been detected by inelastic neutron scattering on Cs$_{2}$Cu$_{3}$SnF$_{12}$.