Physik Department E21, TU München, D-85748 Garching, Germany.
J Phys Condens Matter. 2010 Apr 28;22(16):164207. doi: 10.1088/0953-8984/22/16/164207. Epub 2010 Mar 30.
High pressure studies in MnSi suggest the existence of a non-Fermi liquid state without quantum criticality. The observation of partial magnetic order in a small pocket of the pressure versus temperature phase diagram of MnSi has additionally inspired several proposals of complex spin textures in chiral magnets. We used neutron scattering to observe the formation of a two-dimensional lattice of skyrmion lines, a type of magnetic vortices, under applied magnetic fields in metallic and semiconducting B20 compounds. In strongly disordered systems the skyrmion lattice is hysteretic and extends over a large temperature range. Our study experimentally establishes magnetic materials lacking inversion symmetry as an arena for new forms of spin order composed of topologically stable spin textures.
高压下 MnSi 的研究表明,存在一种没有量子相变的非费米液体态。MnSi 的压力-温度相图的一小部分区域中观察到部分磁有序,这进一步激发了手性磁体中复杂的自旋织构的几个提议。我们使用中子散射在金属和半导体 B20 化合物中观察到在施加磁场下,一种名为磁涡旋的磁漩涡线的二维晶格的形成。在强烈无序的系统中,磁漩涡晶格是滞后的,并在很大的温度范围内延伸。我们的研究从实验上确定了没有反转对称性的磁性材料作为由拓扑稳定的自旋织构组成的新形式的自旋有序的领域。