论文标题
rucl $ _3 $在高磁场上的比例不变磁各向异性
Scale-invariant magnetic anisotropy in RuCl$_3$ at high magnetic fields
论文作者
论文摘要
在Rucl $ _3 $中,非弹性中子散射和拉曼光谱镜头揭示了持续到高温的非自旋波激发的连续体,这表明在蜂窝状晶格上存在旋转液态。在Kitaev模型的背景下,必须探索磁场在基本激发之间引入有限的相互作用,因此必须探索高磁场的效果 - 与自旋交换能量表相当。在这里,我们报告了磁场系数的测量值 - 在磁场方向上,自由能的第二个导数 - 在广泛的磁场和温度下。我们发现,磁场和温度以独立于大型内在交换能量的方式来确定磁反应。这种新兴的比例不变的磁各向异性为高度交换挫败感提供了证据,有利于RUCL $ _3 $中旋转液态的形成。
In RuCl$_3$, inelastic neutron scattering and Raman spectroscopy reveal a continuum of non-spin-wave excitations that persists to high temperature, suggesting the presence of a spin liquid state on a honeycomb lattice. In the context of the Kitaev model, magnetic fields introduce finite interactions between the elementary excitations, and thus the effects of high magnetic fields - comparable to the spin exchange energy scale - must be explored. Here we report measurements of the magnetotropic coefficient - the second derivative of the free energy with respect to magnetic field orientation - over a wide range of magnetic fields and temperatures. We find that magnetic field and temperature compete to determine the magnetic response in a way that is independent of the large intrinsic exchange interaction energy. This emergent scale-invariant magnetic anisotropy provides evidence for a high degree of exchange frustration that favors the formation of a spin liquid state in RuCl$_3$.