Qin Fei, Wu Xiang, Yang Ke, Qin Shan
Key Laboratory of Orogenic Belts and Crustal Evolution, MOE, Peking University and School of Earth and Space Sciences, Peking University, Beijing 100871, People's Republic of China.
J Phys Condens Matter. 2018 Apr 11;30(14):144001. doi: 10.1088/1361-648X/aaaf9b. Epub 2018 Feb 15.
Here we present synchrotron-based x-ray diffraction experiments combined with diamond anvil cell and laser heating techniques on the intermetallic rare earth compound TbPt (Pnma and Z = 4) up to 32.5 GPa and ~1800 K. The lattice parameters of TbPt exhibit continuous compression behavior up to 18.2 GPa without any evidence of phase transformation. Pressure-volume data were fitted to a third-order Birch-Murnaghan equation of state with V = 175.5(2) Å, [Formula: see text] = 110(5) GPa and [Formula: see text] = 3.8(7). TbPt exhibits anisotropic compression with β > β > β and the ratio of axial compressibility is 2.50:1.26:1.00. A new monoclinic phase of TbPt assigned to the Pc or P2/c space group was observed at 32.5 GPa after laser heating at ~1800 K. This new phase is stable at high pressure and presented a quenchable property on decompression to ambient conditions. The pressure-volume relationship is well described by the second-order Birch-Murnaghan equation of state, which yields V = 672(4) Å, [Formula: see text] = 123(6) GPa, which is about ~14% more compressible than the orthorhombic TbPt. Our results provide more information on the structure and elastic property view, and thus a better understanding of the physical properties related to magnetic structure in some intermetallic rare earth alloys.
在此,我们展示了基于同步加速器的X射线衍射实验,该实验结合了金刚石对顶砧和激光加热技术,用于研究金属间稀土化合物TbPt(空间群Pnma,Z = 4),压力高达32.5 GPa,温度约为1800 K。TbPt的晶格参数在高达18.2 GPa时呈现连续压缩行为,没有任何相变迹象。压力-体积数据拟合到三阶Birch-Murnaghan状态方程,V = 175.5(2) Å,[公式:见原文] = 110(5) GPa,[公式:见原文] = 3.8(7)。TbPt表现出各向异性压缩,β > β > β ,轴向压缩率之比为2.50:1.26:1.00。在约1800 K激光加热后,在32.5 GPa下观察到一种新的单斜相TbPt,其属于Pc或P2/c空间群。这个新相在高压下稳定,在减压至环境条件时具有可淬火特性。压力-体积关系可以很好地用二阶Birch-Murnaghan状态方程描述,该方程得出V = 672(4) Å,[公式:见原文] = 123(6) GPa,其压缩性比正交晶系的TbPt大约高14%。我们的结果从结构和弹性性质方面提供了更多信息,从而更好地理解了一些金属间稀土合金中与磁结构相关的物理性质。