Wu T, Chen H, Gao P, Yu T, Chen Z, Liu Z, Ahn K H, Wang X, Cheong S-W, Tyson T A
Department of Physics, New Jersey Institute of Technology, Newark, NJ 07102, USA.
J Phys Condens Matter. 2016 Feb 10;28(5):056005. doi: 10.1088/0953-8984/28/5/056005. Epub 2016 Jan 13.
High pressure x-ray diffraction measurements on perovskite RMnO3 (R = Dy, Ho and Lu) reveal that varying structural changes occur for different R ions. Large lattice changes (orthorhombic strain) occur in DyMnO3 and HoMnO3 while the Jahn-Teller (JT) distortion remains stable. Conversely, in the small R-ion system LuMnO3, Mn-O bond distortions are observed between 4 and 8 GPa with a broad minimum in the JT distortion. High pressure infrared measurements indicate that a phonon near 390 cm(-1) corresponding to the complex motion of the Mn and O ions changes anomalously for LuMnO3. It softens in the 4-8 GPa region, which is consistent with the structural change in Mn-O bonds and then hardens at higher pressures. By contrast, the phonons continuously harden with increasing pressure for DyMnO3 and HoMnO3. Density functional theory methods show that E-phase LuMnO3 is the most stable phase up to the 10 GPa pressure examined. Simulations indicate that the distinct structural change under pressure in LuMnO3 can possibly be used to optimize the electric polarization by pressure/strain.
对钙钛矿型RMnO3(R = 镝、钬和镥)进行的高压X射线衍射测量表明,不同的R离子会发生不同的结构变化。在DyMnO3和HoMnO3中发生了较大的晶格变化(正交应变),而 Jahn-Teller(JT)畸变保持稳定。相反,在小R离子体系LuMnO3中,在4至8 GPa之间观察到Mn-O键畸变,JT畸变有一个宽的最小值。高压红外测量表明,对于LuMnO3,对应于Mn和O离子复杂运动的近390 cm(-1)处的声子发生异常变化。它在4-8 GPa区域软化,这与Mn-O键的结构变化一致,然后在更高压力下硬化。相比之下,DyMnO3和HoMnO3的声子随压力升高而持续硬化。密度泛函理论方法表明,在高达10 GPa的压力下,E相LuMnO3是最稳定的相。模拟表明,LuMnO3在压力下的独特结构变化可能可用于通过压力/应变优化电极化。