Grohol Daniel, Matan Kittiwit, Cho Jin-Hyung, Lee Seung-Hun, Lynn Jeffrey W, Nocera Daniel G, Lee Young S
Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.
Nat Mater. 2005 Apr;4(4):323-8. doi: 10.1038/nmat1353.
The collective behaviour of interacting magnetic moments can be strongly influenced by the topology of the underlying lattice. In geometrically frustrated spin systems, interesting chiral correlations may develop that are related to the spin arrangement on triangular plaquettes. We report a study of the spin chirality on a two-dimensional geometrically frustrated lattice. Our new chemical synthesis methods allow us to produce large single-crystal samples of KFe3(OH)6(SO4)2, an ideal Kagomé lattice antiferromagnet. Combined thermodynamic and neutron scattering measurements reveal that the phase transition to the ordered ground-state is unusual. At low temperatures, application of a magnetic field induces a transition between states with different non-trivial spin-textures.
相互作用的磁矩的集体行为会受到底层晶格拓扑结构的强烈影响。在几何阻挫自旋系统中,可能会出现与三角形晶格上的自旋排列相关的有趣手征关联。我们报告了一项关于二维几何阻挫晶格上自旋手征性的研究。我们新的化学合成方法使我们能够制备出KFe3(OH)6(SO4)2的大单晶样品,这是一种理想的 Kagomé 晶格反铁磁体。结合热力学和中子散射测量结果表明,向有序基态的相变是不寻常的。在低温下,施加磁场会诱导具有不同非平凡自旋纹理的状态之间的转变。