论文标题

在$ \ it {d^7} $ kitaev honeycomb磁铁中,竞争抗铁磁 - 铁磁性状态

Competing Antiferromagnetic-Ferromagnetic States in $\it{d^7}$ Kitaev Honeycomb Magnet

论文作者

Vivanco, Hector K., Trump, Benjamin A., Brown, Craig M., McQueen, Tyrel M.

论文摘要

Kitaev模型是可以分析可解决且在物理上可见的汉密尔顿的罕见例子,产生了拓扑量子自旋液态态。 Here we report signatures of Kitaev spin liquid physics in the honeycomb magnet $Li_3Co_2SbO_6$, built of high-spin $\it{d^7}$ ($Co^{2+}$) ions, in contrast to the more typical low-spin $\it{d^5}$ electron configurations in the presence of large spin-orbit coupling.中子粉末衍射测量,热量和磁化研究支持$ \ it {c_c} 2/\ it {m} $的远程防铁磁订单空间组的发展,低于$ \ it {t_n} $ = 11 k at $ \ it $ \ it $ \ it $ = 0 t。估计为0.6rln2,与接近Kitaev量子旋转液态的系统的预期值非常吻合。温度依赖性磁顺序参数表明$β$值为0.19(3),与XY各向异性和平面订购一致,并在层之间具有类似Ising的相互作用。此外,我们在$ \ iT $ \ it {μ_0H} $ 0.7 t的应用磁场下观察到{C} 2/\ it {c} 2/\ it {m} $的空间组的自旋驱动的交叉序列 过渡。 $ \ it {d^7} $指南针模型,对$ li_3co_2sbo_6 $的特定热量的定量比较,以及相关的蜂窝均与各向异性Kitaev模型均匀,进一步支持与Kitaev Spin Liquid State的接近。该材料展示了用于旋转液体候选物的高旋转$ \ it {d^7} $系统的丰富游乐场,并补充了已知的$ \ it {d^5} $ ir-和ru基材料。

The Kitaev model is a rare example of an analytically solvable and physically instantiable Hamiltonian yielding a topological quantum spin liquid ground state. Here we report signatures of Kitaev spin liquid physics in the honeycomb magnet $Li_3Co_2SbO_6$, built of high-spin $\it{d^7}$ ($Co^{2+}$) ions, in contrast to the more typical low-spin $\it{d^5}$ electron configurations in the presence of large spin-orbit coupling. Neutron powder diffraction measurements, heat capacity, and magnetization studies support the development of a long-range antiferromagnetic order space group of $\it{C_C}2/\it{m}$, below $\it{T_N}$ = 11 K at $\it{μ_0H}$ = 0 T. The magnetic entropy recovered between $\it{T}$ = 2 K and 50 K is estimated to be 0.6Rln2, in good agreement with the value expected for systems close to a Kitaev quantum spin liquid state. The temperature-dependent magnetic order parameter demonstrates a $β$ value of 0.19(3), consistent with XY anisotropy and in-plane ordering, with Ising-like interactions between layers. Further, we observe a spin-flop driven crossover to ferromagnetic order with space group of $\it{C}2/\it{m}$ under an applied magnetic field of $\it{μ_0H}$ $\approx$ 0.7 T at $\it{T}$ = 2 K. Magnetic structure analysis demonstrates these magnetic states are competing at finite applied magnetic fields even below the spin-flop transition. Both the $\it{d^7}$ compass model, a quantitative comparison of the specific heat of $Li_3Co_2SbO_6$, and related honeycomb cobaltates to the anisotropic Kitaev model further support proximity to a Kitaev spin liquid state. This material demonstrates the rich playground of high-spin $\it{d^7}$ systems for spin liquid candidates, and complements known $\it{d^5}$ Ir- and Ru-based materials.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源