Zorko A, Herak M, Gomilšek M, van Tol J, Velázquez M, Khuntia P, Bert F, Mendels P
Jožef Stefan Institute, Jamova c. 39, SI-1000 Ljubljana, Slovenia.
Institute of Physics, Bijenička c. 46, HR-10000 Zagreb, Croatia.
Phys Rev Lett. 2017 Jan 6;118(1):017202. doi: 10.1103/PhysRevLett.118.017202. Epub 2017 Jan 5.
Employing complementary torque magnetometry and electron spin resonance on single crystals of herbertsmithite, the closest realization to date of a quantum kagome antiferromagnet featuring a spin-liquid ground state, we provide novel insight into different contributions to its magnetism. At low temperatures, two distinct types of defects with different magnetic couplings to the kagome spins are found. Surprisingly, their magnetic response contradicts the threefold symmetry of the ideal kagome lattice, suggesting the presence of a global structural distortion that may be related to the establishment of the spin-liquid ground state.
利用互补扭矩磁力测量法和对赫伯斯史密斯石单晶进行电子自旋共振,赫伯斯史密斯石是迄今为止最接近具有自旋液体基态的量子 Kagome 反铁磁体的实例,我们对其磁性的不同贡献提供了新的见解。在低温下,发现了两种与 Kagome 自旋具有不同磁耦合的不同类型的缺陷。令人惊讶的是,它们的磁响应与理想 Kagome 晶格的三重对称性相矛盾,这表明存在可能与自旋液体基态的建立有关的全局结构畸变。