Najev A, Hameed S, Gautreau D, Wang Z, Joe J, Požek M, Birol T, Fernandes R M, Greven M, Pelc D
Department of Physics, Faculty of Science, University of Zagreb, Bijenička 32, HR-10000 Zagreb, Croatia.
School of Physics and Astronomy, University of Minnesota, Minneapolis, Minnesota 55455, USA.
Phys Rev Lett. 2022 Apr 22;128(16):167201. doi: 10.1103/PhysRevLett.128.167201.
The perovskite rare-earth titanates are model Mott insulators with magnetic ground states that are very sensitive to structural distortions. These distortions couple strongly to the orbital degrees of freedom and, in principle, it should be possible to tune the superexchange and the magnetic transition with strain. We investigate the representative system (Y,La,Ca)TiO_{3}, which exhibits low crystallographic symmetry and no structural instabilities. From magnetic susceptibility measurements of the Curie temperature, we demonstrate direct, reversible, and continuous control of ferromagnetism by influencing the TiO_{6} octahedral tilts and rotations with uniaxial strain. The relative change in T_{C} as a function of strain is well described by ab initio calculations, which provides detailed understanding of the complex interactions among structural, orbital, and magnetic properties in rare-earth titanates. The demonstrated manipulation of octahedral distortions opens up far-reaching possibilities for investigations of electron-lattice coupling, competing ground states, and magnetic quantum phase transitions in a wide range of quantum materials.
钙钛矿稀土钛酸盐是具有磁性基态的典型莫特绝缘体,其对结构畸变非常敏感。这些畸变与轨道自由度强烈耦合,原则上,通过应变调节超交换和磁转变应该是可行的。我们研究了具有低晶体对称性且无结构不稳定性的代表性体系(Y,La,Ca)TiO₃。通过对居里温度的磁化率测量,我们证明了通过单轴应变影响TiO₆八面体的倾斜和旋转,可以直接、可逆且连续地控制铁磁性。T₀随应变的相对变化可以通过从头算计算得到很好的描述,这为深入理解稀土钛酸盐中结构、轨道和磁性性质之间的复杂相互作用提供了依据。所展示的对八面体畸变的操控为研究广泛的量子材料中的电子 - 晶格耦合、竞争基态和磁量子相变开辟了广阔的可能性。