Multi-disciplinary Materials Research Center, Frontier Institute of Science and Technology, State Key Laboratory for Mechanical Behavior of Materials, Xi'an Jiaotong University, Xi'an 710049, China.
Phys Rev Lett. 2010 May 14;104(19):197201. doi: 10.1103/PhysRevLett.104.197201. Epub 2010 May 11.
For more than half of a century, morphotropic phase boundary (MPB) in ferroelectric materials has drawn constant interest because it can significantly enhance the piezoelectric properties. However, MPB has been studied merely in ferroelectric systems, not in another large class of ferroic systems, the ferromagnets. In this Letter, we report the existence of an MPB in a ferromagnetic system TbCo2-DyCo2. Such a magnetic MPB involves a first-order magnetoelastic transition, at which both magnetization direction and crystal structure change simultaneously. The MPB composition demonstrates a 3-6 times larger "figure of merit" of magnetostrictive response compared with that of the off-MPB compositions. The finding of MPB in ferromagnets may help to discover novel high-performance magnetostrictive and even magnetoelectric materials.
半个多世纪以来,铁电材料中的准同型相界(MPB)一直引起人们的持续关注,因为它可以显著提高压电性能。然而,MPB 仅在铁电系统中进行了研究,而不在另一个大型铁电系统——铁磁体中进行研究。在这篇快报中,我们报告了在 TbCo2-DyCo2 铁磁体系统中存在 MPB。这种磁 MPB 涉及一级磁弹转变,在此过程中,磁化方向和晶体结构同时发生变化。MPB 组成的磁致伸缩响应“优值”比非 MPB 组成的磁致伸缩响应“优值”大 3-6 倍。在铁磁体中发现 MPB 可能有助于发现新型高性能磁致伸缩甚至磁电材料。