Department of Materials Science and Engineering, University of Maryland, College Park, Maryland 20742, USA.
Phys Rev Lett. 2013 Jul 5;111(1):017203. doi: 10.1103/PhysRevLett.111.017203. Epub 2013 Jul 3.
The structure and properties of the ferromagnet Tb(1-x)Dy(x)Fe(2) are explored through the morphotropic phase boundary (MPB) separating ferroic phases of differing symmetry. Our synchrotron data support a first order structural transition, with a broadening MPB width at higher temperatures. The optimal point for magnetomechanical applications is not centered on the MPB but lies on the rhombohedral side, where the high striction of the rhombohedral majority phase combines with the softened anisotropy of the MPB. We compare our findings with single ion crystal field theory and with ferroelectric MPBs, where the controlling energies are different.
通过分离不同对称性铁电相的准同型相界(MPB),探索了铁磁体 Tb(1-x)Dy(x)Fe(2) 的结构和性质。我们的同步辐射数据支持一级结构相变,在较高温度下 MPB 宽度变宽。磁机械应用的最佳点不在 MPB 中心,而是位于三方相一侧,其中三方相的高应变与 MPB 的各向异性软化相结合。我们将研究结果与单离子晶场理论和铁电 MPB 进行了比较,控制能量不同。