论文标题
沮丧的三角晶格材料中的旋转链相关性cumno $ _2 $
Spin-chain correlations in the frustrated triangular lattice material CuMnO$_2$
论文作者
论文摘要
Ising三角晶格仍然是挫败磁性的经典测试案例。在这里,我们报告了Cumno $ _2 $中短范围磁顺序的中子散射测量值,该测量由Mn $^{3+} $带有单离子各向异性的Mn $^{3+} $的扭曲晶格组成。 Cumno $ _2 $上的物理属性测量与各向异性轨道职业引起的一维相关性一致。然而,粉末测量中看到的弥散性磁中子散射以前已通过2D Warren型相关性拟合。使用中子光谱法,我们表明顺磁波动持续到$ \ sim $ 25 MEV tn = 65 K。这与典型衍射仪的入射能相媲美,导致能量整合信号的涂抹,因此在准静态近似中无法分析。我们使用低能XYZ极化中子散射来提取纯磁(准)静态信号。这是通过反向蒙特卡洛分析拟合的,该分析表明,在75 K处的经典自旋液相中,三角形层中的两个方向完全沮丧。强的抗铁磁相关性仅在B轴上发现,因此我们的结果统一了中子散射和型物质物理特性测量的图片。
The Ising triangular lattice remains the classic test-case for frustrated magnetism. Here we report neutron scattering measurements of short range magnetic order in CuMnO$_2$, which consists of a distorted lattice of Mn$^{3+}$ spins with single-ion anisotropy. Physical property measurements on CuMnO$_2$ are consistent with 1D correlations caused by anisotropic orbital occupation. However the diffuse magnetic neutron scattering seen in powder measurements has previously been fitted by 2D Warren-type correlations. Using neutron spectroscopy, we show that paramagnetic fluctuations persist up to $\sim$25 meV above TN= 65 K. This is comparable to the incident energy of typical diffractometers, and results in a smearing of the energy integrated signal, which hence cannot be analysed in the quasi-static approximation. We use low energy XYZ polarised neutron scattering to extract the purely magnetic (quasi)-static signal. This is fitted by reverse Monte Carlo analysis, which reveals that two directions in the triangular layers are perfectly frustrated in the classical spin-liquid phase at 75 K. Strong antiferromagnetic correlations are only found along the b-axis, and our results hence unify the pictures seen by neutron scattering and macroscopic physical property measurements.